Tag Archives: helical reducer

China supplier S Series Helical Worm Gear Box (S37-S107) 3-Phase Right Angle Helical/Worm Gear Speed Reducer Motor vacuum pump

Product Description

S Series Helical Worm Gear Box(S37-S107)

Parameter list:
Output speed: 0.1 ~ 433 / min
Output torque: Acuities were 4200 n. M
Motor power: 0.12 ~ 22 kw
Size: S37, S47, S57, S67, S77, S87, S97
Structure: Foot mounted, flange mounted, hollow shaft, CHINAMFG shaft
Type: SAZ, SA, SAF, SAZ, SAT, SS, SAS, SFS, SFS, SAFS

Application:
Coal equipment, ferrous metallurgy, mining machinery, paper machinery, rubber and plastics, petrochemical, lifting transportation, drink beer, food packaging, pharmacy and leather, textile dyeing and printing, environmental protection equipment, light industry machinery and so on.

Characteristics:
1. Combination of helical-worm gears, small in size, light weight, compact structure, large reduction ratio and strong bearing capacity;
2. Bump gearbox body surface has a cooling effect, low temperature rise and low noise;
3. Good sealing performance and strong working environment adaptability;
4. High drive accuracy, particularly adapted to the frequent starts occasions;
5. Input types: Motor directly connected, the motor belt join or input shaft coupling flange input.

Packing & Shipping:

FAQ:
Q1 Are you a manufacturer or trading company
A1 A company integrated with industry and trade.

Q2 What about the shipping methods
A2 For urgent order and light weight, you can choose the following express UPS, FedEx, TNT,DHL, EMS. For heavy weight, you can choose to deliver the goods by air or by sea to save cost.

Q3 What about the payment methods
A3 We accept TT, LC for big amount, and for small amount, you can pay us by PayPal, Western Union, and etc.

Q4 How much does it cost to ship to my country
A4 It depends on seasons. Fee is different in different seasons. You can consult us at all times.

Q5 What’s your delivery time
A5 Usually we produce within 35-60days after the payment confirmed. If you are urgent, we will urge the production department for you.
  /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Application: Industry
Hardness: Hardened Tooth Surface
Installation: Horizontal Type
Layout: Coaxial
Gear Shape: Bevel Gear
Step: Three-Step
Customization:
Available

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gear motor

Where can individuals find reliable resources for learning more about gear motors and their applications?

Individuals seeking to learn more about gear motors and their applications have access to various reliable resources that provide valuable information and insights. Here are some sources where individuals can find reliable information about gear motors:

1. Manufacturer Websites:

Manufacturer websites are a primary source of information about gear motors. Gear motor manufacturers often provide detailed product specifications, application guides, technical documentation, and educational materials on their websites. These resources offer insights into different gear motor types, features, performance characteristics, and application considerations. Manufacturer websites are a reliable and convenient starting point for learning about gear motors.

2. Industry Associations and Organizations:

Industry associations and organizations related to mechanical engineering, automation, and motion control often have resources and publications dedicated to gear motors. These organizations provide technical articles, whitepapers, industry standards, and guidelines related to gear motor design, selection, and application. Examples of such associations include the American Gear Manufacturers Association (AGMA), International Electrotechnical Commission (IEC), and Institute of Electrical and Electronics Engineers (IEEE).

3. Technical Publications and Journals:

Technical publications and journals focused on engineering, robotics, and motion control are valuable sources of in-depth knowledge about gear motors. Publications like IEEE Transactions on Industrial Electronics, Mechanical Engineering magazine, or Motion System Design magazine often feature articles, case studies, and research papers on gear motor technology, advancements, and applications. These publications provide authoritative and up-to-date information from industry experts and researchers.

4. Online Forums and Communities:

Online forums and communities dedicated to engineering, robotics, and automation can be excellent resources for discussions, insights, and practical experiences related to gear motors. Websites like Stack Exchange, engineering-focused subreddits, or specialized forums provide platforms for individuals to ask questions, share knowledge, and engage in discussions with professionals and enthusiasts in the field. Participating in these communities allows individuals to learn from real-world experiences and gain practical insights.

5. Educational Institutions and Courses:

Technical colleges, universities, and vocational training centers often offer courses or programs in mechanical engineering, mechatronics, or automation that cover gear motor fundamentals and applications. These educational institutions provide comprehensive curricula, textbooks, and lecture materials that can serve as reliable resources for individuals interested in learning about gear motors. Additionally, online learning platforms like Coursera, Udemy, or LinkedIn Learning offer courses on topics related to gear motors and motion control.

6. Trade Shows and Exhibitions:

Attending trade shows, exhibitions, and industry conferences related to automation, robotics, or motion control provides opportunities to learn about the latest advancements in gear motor technology. These events often feature product demonstrations, technical presentations, and expert panels where individuals can interact with gear motor manufacturers, industry experts, and other professionals. It’s a great way to stay updated on the latest trends, innovations, and applications of gear motors.

When seeking reliable resources, it’s important to consider the credibility of the source, the expertise of the authors, and the relevance to the specific area of interest. By leveraging these resources, individuals can gain a comprehensive understanding of gear motors and their applications, from basic principles to advanced topics, enabling them to make informed decisions and effectively utilize gear motors in their projects or applications.

gear motor

Can you explain the role of backlash in gear motors and how it’s managed in design?

Backlash plays a significant role in gear motors and is an important consideration in their design and operation. Backlash refers to the slight clearance or play between the teeth of gears in a gear system. It affects the precision, accuracy, and responsiveness of the gear motor. Here’s an explanation of the role of backlash in gear motors and how it is managed in design:

1. Role of Backlash:

Backlash in gear motors can have both positive and negative effects:

  • Compensation for Misalignment: Backlash can help compensate for minor misalignments between gears, shafts, or the load. It allows a small amount of movement before engaging the next set of teeth, reducing the risk of damage due to misalignment. This can be particularly beneficial in applications where precise alignment is challenging or subject to variations.
  • Negative Impact on Accuracy and Responsiveness: Backlash can introduce a delay or “dead zone” in the motion transmission. When changing the direction of rotation or reversing the load, the gear teeth must first overcome the clearance or play before engaging in the opposite direction. This delay can reduce the overall accuracy, responsiveness, and repeatability of the gear motor, especially in applications that require precise positioning or rapid changes in direction or speed.

2. Managing Backlash in Design:

Designers employ various techniques to manage and minimize backlash in gear motors:

  • Tight Manufacturing Tolerances: Proper manufacturing techniques and tight tolerances can help minimize backlash. Precision machining and quality control during the production of gears and gear components ensure closer tolerances, reducing the amount of play between gear teeth.
  • Preload or Pre-tensioning: Applying a preload or pre-tensioning force to the gear system can help reduce backlash. This technique involves introducing an initial force or tension that eliminates the clearance between gear teeth. It ensures immediate contact and engagement of the gear teeth, minimizing the dead zone and improving the overall responsiveness and accuracy of the gear motor.
  • Anti-Backlash Gears: Anti-backlash gears are designed specifically to minimize or eliminate backlash. They typically feature modifications to the gear tooth profile, such as modified tooth shapes or special tooth arrangements, to reduce clearance. Anti-backlash gears can be used in gear motor designs to improve precision and minimize the effects of backlash.
  • Backlash Compensation: In some cases, backlash compensation techniques can be employed. These techniques involve monitoring the position or movement of the load and applying control algorithms to compensate for the backlash. By accounting for the clearance and adjusting the control signals accordingly, the effects of backlash can be mitigated, improving accuracy and responsiveness.

3. Application-Specific Considerations:

The management of backlash in gear motors should be tailored to the specific application requirements:

  • Positioning Accuracy: Applications that require precise positioning, such as robotics or CNC machines, may require tighter backlash control to ensure accurate and repeatable movements.
  • Dynamic Response: Applications that involve rapid changes in direction or speed, such as high-speed automation or servo control systems, may require reduced backlash to maintain responsiveness and minimize overshoot or lag.
  • Load Characteristics: The nature of the load and its impact on the gear system should be considered. Heavy loads or applications with significant inertial forces may require additional backlash management techniques to maintain stability and accuracy.

In summary, backlash in gear motors can affect precision, accuracy, and responsiveness. While it can compensate for misalignments, backlash may introduce delays and reduce the overall performance of the gear motor. Designers manage backlash through tight manufacturing tolerances, preload techniques, anti-backlash gears, and backlash compensation methods. The management of backlash depends on the specific application requirements, considering factors such as positioning accuracy, dynamic response, and load characteristics.

gear motor

What are the different types of gears used in gear motors, and how do they impact performance?

Various types of gears are used in gear motors, each with its unique characteristics and impact on performance. The choice of gear type depends on the specific requirements of the application, including torque, speed, efficiency, noise level, and space constraints. Here’s a detailed explanation of the different types of gears used in gear motors and their impact on performance:

1. Spur Gears:

Spur gears are the most common type of gears used in gear motors. They have straight teeth that are parallel to the gear’s axis and mesh with another spur gear to transmit power. Spur gears provide high efficiency, reliable operation, and cost-effectiveness. However, they can generate significant noise due to the meshing of teeth, and they may produce axial thrust forces. Spur gears are suitable for applications that require high torque transmission and moderate to high rotational speeds.

2. Helical Gears:

Helical gears have angled teeth that are cut at an angle to the gear’s axis. This helical tooth configuration enables gradual engagement and smoother tooth contact, resulting in reduced noise and vibration compared to spur gears. Helical gears provide higher load-carrying capacity and are suitable for applications that require high torque transmission and moderate to high rotational speeds. They are commonly used in gear motors where low noise operation is desired, such as in automotive applications and industrial machinery.

3. Bevel Gears:

Bevel gears have teeth that are cut on a conical surface. They are used to transmit power between intersecting shafts, usually at right angles. Bevel gears can have straight teeth (straight bevel gears) or curved teeth (spiral bevel gears). These gears provide efficient power transmission and precise motion control in applications where shafts need to change direction. Bevel gears are commonly used in gear motors for applications such as steering systems, machine tools, and printing presses.

4. Worm Gears:

Worm gears consist of a worm (a type of screw) and a mating gear called a worm wheel or worm gear. The worm has a helical thread that meshes with the worm wheel, resulting in a compact and high gear reduction ratio. Worm gears provide high torque transmission, low noise operation, and self-locking properties, which prevent reverse motion. They are commonly used in gear motors for applications that require high gear reduction and locking capabilities, such as in lifting mechanisms, conveyor systems, and machine tools.

5. Planetary Gears:

Planetary gears, also known as epicyclic gears, consist of a central sun gear, multiple planet gears, and an outer ring gear. The planet gears mesh with both the sun gear and the ring gear, creating a compact and efficient gear system. Planetary gears offer high torque transmission, high gear reduction ratios, and excellent load distribution. They are commonly used in gear motors for applications that require high torque and compact size, such as in robotics, automotive transmissions, and industrial machinery.

6. Rack and Pinion:

Rack and pinion gears consist of a linear rack (a straight toothed bar) and a pinion gear (a spur gear with a small diameter). The pinion gear meshes with the rack to convert rotary motion into linear motion or vice versa. Rack and pinion gears provide precise linear motion control and are commonly used in gear motors for applications such as linear actuators, CNC machines, and steering systems.

The choice of gear type in a gear motor depends on factors such as the desired torque, speed, efficiency, noise level, and space constraints. Each type of gear offers specific advantages and impacts the performance of the gear motor differently. By selecting the appropriate gear type, gear motors can be optimized for their intended applications, ensuring efficient and reliable power transmission.

China supplier S Series Helical Worm Gear Box (S37-S107) 3-Phase Right Angle Helical/Worm Gear Speed Reducer Motor   vacuum pump	China supplier S Series Helical Worm Gear Box (S37-S107) 3-Phase Right Angle Helical/Worm Gear Speed Reducer Motor   vacuum pump
editor by CX 2024-04-16

China Standard Src Helical Gear Reducer Helical Gear Reduction Helical Gear Reduction Motor vacuum pump belt

Product Description

Features
1.Wide transmission rate, strong output torque
2.Compact mechanical structure, light weight, small volume&Good heat-dissipating
3.Smooth operation with lower noise or vibration
4.Easy mounting, free linking, high efficiency
5.Upto 96% transmission efficiency
5. PERFECT  SUBSTITUDE FOR  SEW AND TRANSTECNO  PRODUCTS 

Applications
Wide range of application,including light industry of food &beverage, Cement,
package,construction material,chemicals and etc.

Technical data:

Model SRC01, SRC02, SRC03, SRC04
Single unit versions SRC-P  IEC motor mounting 
SRC-HS   shaft mounting 
 Power 0.25—-4KW 
reduction ratio 3.66 – 54 
 Output torque  3.0—500N.M
 Gear material  20CrMnTi with carburizing and quenching.The hardness of surface is 56-62HRC with carbonized layer 0.5-0.8mm
   

After-sale service:
One year warranty,subject to proper operation and installation;free technical support all the time.

  /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Application: Motor
Layout: Coaxial
Hardness: Hardened Tooth Surface
Customization:
Available

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Shipping Cost:

Estimated freight per unit.







about shipping cost and estimated delivery time.
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Full Payment
Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

gear motor

What types of feedback mechanisms are commonly integrated into gear motors for control?

Gear motors often incorporate feedback mechanisms to provide control and improve their performance. These feedback mechanisms enable the motor to monitor and adjust its operation based on various parameters. Here are some commonly integrated feedback mechanisms in gear motors:

1. Encoder Feedback:

An encoder is a device that provides position and speed feedback by converting the motor’s mechanical motion into electrical signals. Encoders commonly used in gear motors include:

  • Incremental Encoders: These encoders provide information about the motor’s shaft position and speed relative to a reference point. They generate pulses as the motor rotates, allowing precise measurement of position and speed changes.
  • Absolute Encoders: Absolute encoders provide the precise position of the motor’s shaft within a full revolution. They do not require a reference point and provide accurate feedback even after power loss or motor restart.

2. Hall Effect Sensors:

Hall effect sensors use the principle of the Hall effect to detect the presence and strength of a magnetic field. They are commonly used in gear motors for speed and position sensing. Hall effect sensors provide feedback by detecting changes in the motor’s magnetic field and converting them into electrical signals.

3. Current Sensors:

Current sensors monitor the electrical current flowing through the motor’s windings. By measuring the current, these sensors provide feedback regarding the motor’s torque, load conditions, and power consumption. Current sensors are essential for motor control strategies such as current limiting, overcurrent protection, and closed-loop control.

4. Temperature Sensors:

Temperature sensors are integrated into gear motors to monitor the motor’s temperature. They provide feedback on the motor’s thermal conditions, allowing the control system to adjust the motor’s operation to prevent overheating. Temperature sensors are crucial for ensuring the motor’s reliability and preventing damage due to excessive heat.

5. Hall Effect Limit Switches:

Hall effect limit switches are used to detect the presence or absence of a magnetic field within a specific range. They are commonly employed as end-of-travel or limit switches in gear motors. Hall effect limit switches provide feedback to the control system, indicating when the motor has reached a specific position or when it has moved beyond the allowed range.

6. Resolver Feedback:

A resolver is an electromagnetic device used to determine the position and speed of a rotating shaft. It provides feedback by generating sine and cosine signals that correspond to the shaft’s angular position. Resolver feedback is commonly used in high-performance gear motors requiring accurate position and speed control.

These feedback mechanisms, when integrated into gear motors, enable precise control, monitoring, and adjustment of various motor parameters. By utilizing feedback signals from encoders, Hall effect sensors, current sensors, temperature sensors, limit switches, or resolvers, the control system can optimize the motor’s performance, ensure accurate positioning, maintain speed control, and protect the motor from excessive loads or overheating.

gear motor

How does the voltage and power rating of a gear motor impact its suitability for different tasks?

The voltage and power rating of a gear motor are important factors that influence its suitability for different tasks. These specifications determine the motor’s electrical characteristics and its ability to perform specific tasks effectively. Here’s a detailed explanation of how voltage and power rating impact the suitability of a gear motor for different tasks:

1. Voltage Rating:

The voltage rating of a gear motor refers to the electrical voltage it requires to operate optimally. Here’s how the voltage rating affects suitability:

  • Compatibility with Power Supply: The gear motor’s voltage rating must match the available power supply. Using a motor with a voltage rating that is too high or too low for the power supply can lead to improper operation or damage to the motor.
  • Electrical Safety: Adhering to the specified voltage rating ensures electrical safety. Using a motor with a higher voltage rating than recommended can pose safety hazards, while using a motor with a lower voltage rating may result in inadequate performance.
  • Application Flexibility: Different tasks or applications may have specific voltage requirements. For example, low-voltage gear motors are commonly used in battery-powered devices or applications with low-power requirements, while high-voltage gear motors are suitable for industrial applications or tasks that require higher power output.

2. Power Rating:

The power rating of a gear motor indicates its ability to deliver mechanical power. It is typically specified in units of watts (W) or horsepower (HP). The power rating impacts the suitability of a gear motor in the following ways:

  • Load Capacity: The power rating determines the maximum load that a gear motor can handle. Motors with higher power ratings are capable of driving heavier loads or handling tasks that require more torque.
  • Speed and Torque: The power rating affects the motor’s speed and torque characteristics. Motors with higher power ratings generally offer higher speeds and greater torque output, making them suitable for applications that require faster operation or the ability to overcome higher resistance or loads.
  • Efficiency and Energy Consumption: The power rating is related to the motor’s efficiency and energy consumption. Higher power-rated motors may be more efficient, resulting in lower energy losses and reduced operating costs over time.
  • Thermal Considerations: Motors with higher power ratings may generate more heat during operation. It is crucial to consider the motor’s power rating in relation to its thermal management capabilities to prevent overheating and ensure long-term reliability.

Considerations for Task Suitability:

When selecting a gear motor for a specific task, it is important to consider the following factors in relation to the voltage and power rating:

  • Required Torque and Load: Assess the torque and load requirements of the task to ensure that the gear motor’s power rating is sufficient to handle the expected load without being overloaded.
  • Speed and Precision: Consider the desired speed and precision of the task. Motors with higher power ratings generally offer better speed control and accuracy.
  • Power Supply Availability: Evaluate the availability and compatibility of the power supply with the gear motor’s voltage rating. Ensure that the power supply can provide the required voltage for the motor’s optimal operation.
  • Environmental Factors: Consider any specific environmental factors, such as temperature or humidity, that may impact the gear motor’s performance. Ensure that the motor’s voltage and power ratings are suitable for the intended operating conditions.

In summary, the voltage and power rating of a gear motor have significant implications for its suitability in different tasks. The voltage rating determines compatibility with the power supply and ensures electrical safety, while the power rating influences load capacity, speed, torque, efficiency, and thermal considerations. When choosing a gear motor, it is crucial to carefully evaluate the task requirements and consider the voltage and power rating in relation to factors such as torque, speed, power supply availability, and environmental conditions.

gear motor

In which industries are gear motors commonly used, and what are their primary applications?

Gear motors find widespread use in various industries due to their versatility, reliability, and ability to provide controlled mechanical power. They are employed in a wide range of applications that require precise power transmission and speed control. Here’s a detailed explanation of the industries where gear motors are commonly used and their primary applications:

1. Robotics and Automation:

Gear motors play a crucial role in robotics and automation industries. They are used in robotic arms, conveyor systems, automated assembly lines, and other robotic applications. Gear motors provide the required torque, speed control, and directional control necessary for the precise movements and operations of robots. They enable accurate positioning, gripping, and manipulation tasks in industrial and commercial automation settings.

2. Automotive Industry:

The automotive industry extensively utilizes gear motors in various applications. They are used in power windows, windshield wipers, HVAC systems, seat adjustment mechanisms, and many other automotive components. Gear motors provide the necessary torque and speed control for these systems, enabling smooth and efficient operation. Additionally, gear motors are also utilized in electric and hybrid vehicles for powertrain applications.

3. Manufacturing and Machinery:

Gear motors find wide application in the manufacturing and machinery sector. They are used in conveyor belts, packaging equipment, material handling systems, industrial mixers, and other machinery. Gear motors provide reliable power transmission, precise speed control, and torque amplification, ensuring efficient and synchronized operation of various manufacturing processes and machinery.

4. HVAC and Building Systems:

In heating, ventilation, and air conditioning (HVAC) systems, gear motors are commonly used in damper actuators, control valves, and fan systems. They enable precise control of airflow, temperature, and pressure, contributing to energy efficiency and comfort in buildings. Gear motors also find applications in automatic doors, blinds, and gate systems, providing reliable and controlled movement.

5. Marine and Offshore Industry:

Gear motors are extensively used in the marine and offshore industry, particularly in propulsion systems, winches, and cranes. They provide the required torque and speed control for various marine operations, including steering, anchor handling, cargo handling, and positioning equipment. Gear motors in marine applications are designed to withstand harsh environments and provide reliable performance under demanding conditions.

6. Renewable Energy Systems:

The renewable energy sector, including wind turbines and solar tracking systems, relies on gear motors for efficient power generation. Gear motors are used to adjust the rotor angle and position in wind turbines, optimizing their performance in different wind conditions. In solar tracking systems, gear motors enable the precise movement and alignment of solar panels to maximize sunlight capture and energy production.

7. Medical and Healthcare:

Gear motors have applications in the medical and healthcare industry, including in medical equipment, laboratory devices, and patient care systems. They are used in devices such as infusion pumps, ventilators, surgical robots, and diagnostic equipment. Gear motors provide precise control and smooth operation, ensuring accurate dosing, controlled movements, and reliable functionality in critical medical applications.

These are just a few examples of the industries where gear motors are commonly used. Their versatility and ability to provide controlled mechanical power make them indispensable in numerous applications requiring torque amplification, speed control, directional control, and load distribution. The reliable and efficient power transmission offered by gear motors contributes to the smooth and precise operation of machinery and systems in various industries.

China Standard Src Helical Gear Reducer Helical Gear Reduction Helical Gear Reduction Motor   vacuum pump belt	China Standard Src Helical Gear Reducer Helical Gear Reduction Helical Gear Reduction Motor   vacuum pump belt
editor by CX 2024-04-12

China Professional 90 Degree Hollow Shaft Helical Gear Reducer Warm Gearbox Motor for Agricultural Machine vacuum pump oil near me

Product Description

F series gear reducer is 1 kind of parallel shaft helical gear reducer , which consist of 2 or 3 stageshelical 
gears (relate to gear ratio) in the same case . The hard tooth surface gear use the high quality alloy steel ,the
process of carburizing and quenching, grinding ,which give it follow characters :Stable transmission ,low noise
and temperature ,high loading ,long working lift . Wide application ,specialize in Metallurgy ,Sewage treatment,
Chemical Industry , Pharmacy ,Agriculture equipment and Oil industry

Specifications:

1) Output speed: 0.6~1,571r/min

2) Output torque: up to 21700N.m

3) Motor power: 0.12~200kW

4) Mounted form: foot-mounted and flange-mounted mounting

Product Description

 

Product Advantages

F Series Gearbox Reducer

Product name 

F series of the gearbox hollow shaft model F107 oil seal transmission gearbox reducer reduction

Warranty

1 years

Applicable Industries

Manufacturing Plant

Weight (KG)

50KG

Customized support

OEM

Gearing Arrangement

Helical

Output Torque

1.8-2430N.M

Input Speed

1440, 2800,960,750

Output Speed

0.5 to 200

Place of Origin

China

Product name

F Series Parallel Shaft Gearbox Reducer

Application

Hardened Tooth Surface

Installation

Horizontal Type

Layout

Coaxial

Gear Shape

Helical

Production Capacity

800-1500PCS /Month

Type

Gear Reduction Motor

Color

Blue,Sliver or Customized

Packing

Wooden Box

 

F series Parallel Shaft Helical Gear Reducer

Helical gear hard tooth surface structure, 2 / 3 gear combinations can be selected to achieve the required speed ratio, with reinforced cast iron shell, high bearing capacity, can be matched with different types of motors, small size, light weight, large
torque, stable operation and low noise.

 

Our Advantages

 

Certifications

 

/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Hardness: Hardened Tooth Surface
Installation: Horizontal Type
Layout: Parallel
Gear Shape: Bevel Gear
Step: Single-Step
Type: Gear Reducer
Samples:
US$ 500/Piece
1 Piece(Min.Order)

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gear motor

Can gear motors be used in robotics, and if so, what are some notable applications?

Yes, gear motors are widely used in robotics due to their ability to provide torque, precise control, and compact size. They play a crucial role in various robotic applications, enabling the movement, manipulation, and control of robotic systems. Here are some notable applications of gear motors in robotics:

1. Robotic Arm Manipulation:

Gear motors are commonly used in robotic arms to provide precise and controlled movement. They enable the articulation of the arm’s joints, allowing the robot to reach different positions and orientations. Gear motors with high torque capabilities are essential for lifting, rotating, and manipulating objects with varying weights and sizes.

2. Mobile Robots:

Gear motors are employed in mobile robots, including wheeled robots and legged robots, to drive their locomotion. They provide the necessary torque and control for the robot to move, turn, and navigate in different environments. Gear motors with appropriate gear ratios ensure the robot’s mobility, stability, and maneuverability.

3. Robotic Grippers and End Effectors:

Gear motors are used in robotic grippers and end effectors to control the opening, closing, and gripping force. By integrating gear motors into the gripper mechanism, robots can grasp and manipulate objects of various shapes, sizes, and weights. The gear motors enable precise control over the gripping action, allowing the robot to handle delicate or fragile objects with care.

4. Autonomous Drones and UAVs:

Gear motors are utilized in the propulsion systems of autonomous drones and unmanned aerial vehicles (UAVs). They drive the propellers or rotors, providing the necessary thrust and control for the drone’s flight. Gear motors with high power-to-weight ratios, efficient energy conversion, and precise speed control are crucial for achieving stable and maneuverable flight in drones.

5. Humanoid Robots:

Gear motors are integral to the movement and functionality of humanoid robots. They are used in robotic joints, such as hips, knees, and shoulders, to enable human-like movements. Gear motors with appropriate torque and speed capabilities allow humanoid robots to walk, run, climb stairs, and perform complex motions resembling human actions.

6. Robotic Exoskeletons:

Gear motors play a vital role in robotic exoskeletons, which are wearable robotic devices designed to augment human strength and assist in physical tasks. Gear motors are used in the exoskeleton’s joints and actuators, providing the necessary torque and control to enhance human abilities. They enable users to perform tasks with reduced effort, assist in rehabilitation, or provide support in physically demanding environments.

These are just a few notable applications of gear motors in robotics. Their versatility, torque capabilities, precise control, and compact size make them indispensable components in various robotic systems. Gear motors enable robots to perform complex tasks, move with agility, interact with the environment, and assist humans in a wide range of applications, from industrial automation to healthcare and exploration.

gear motor

How do gear motors compare to other types of motors in terms of power and efficiency?

Gear motors can be compared to other types of motors in terms of power output and efficiency. The choice of motor type depends on the specific application requirements, including the desired power level, efficiency, speed range, torque characteristics, and control capabilities. Here’s a detailed explanation of how gear motors compare to other types of motors in terms of power and efficiency:

1. Gear Motors:

Gear motors combine a motor with a gear mechanism to deliver increased torque output and improved control. The gear reduction enables gear motors to provide higher torque while reducing the output speed. This makes gear motors suitable for applications that require high torque, precise positioning, and controlled movements. However, the gear reduction process introduces mechanical losses, which can slightly reduce the overall efficiency of the system compared to direct-drive motors. The efficiency of gear motors can vary depending on factors such as gear quality, lubrication, and maintenance.

2. Direct-Drive Motors:

Direct-drive motors, also known as gearless or integrated motors, do not use a gear mechanism. They provide a direct connection between the motor and the load, eliminating the need for gear reduction. Direct-drive motors offer advantages such as high efficiency, low maintenance, and compact design. Since there are no gears involved, direct-drive motors experience fewer mechanical losses and can achieve higher overall efficiency compared to gear motors. However, direct-drive motors may have limitations in terms of torque output and speed range, and they may require more complex control systems to achieve precise positioning.

3. Stepper Motors:

Stepper motors are a type of gear motor that excels in precise positioning applications. They operate by converting electrical pulses into incremental steps of movement. Stepper motors offer excellent positional accuracy and control. They are capable of precise positioning and can hold a position without power. Stepper motors have relatively high torque at low speeds, making them suitable for applications that require precise control and positioning, such as robotics, 3D printers, and CNC machines. However, stepper motors may have lower overall efficiency compared to direct-drive motors due to the additional power required to overcome the detents between steps.

4. Servo Motors:

Servo motors are another type of gear motor known for their high torque, high speed, and excellent positional accuracy. Servo motors combine a motor, a feedback device (such as an encoder), and a closed-loop control system. They offer precise control over position, speed, and torque. Servo motors are widely used in applications that require accurate and responsive positioning, such as industrial automation, robotics, and camera pan-tilt systems. Servo motors can achieve high efficiency when properly optimized and controlled but may have slightly lower efficiency compared to direct-drive motors due to the additional complexity of the control system.

5. Efficiency Considerations:

When comparing power and efficiency among different motor types, it’s important to consider the specific requirements and operating conditions of the application. Factors such as load characteristics, speed range, duty cycle, and control requirements influence the overall efficiency of the motor system. While direct-drive motors generally offer higher efficiency due to the absence of mechanical losses from gears, gear motors can deliver higher torque output and enhanced control capabilities. The efficiency of gear motors can be optimized through proper gear selection, lubrication, and maintenance practices.

In summary, gear motors offer increased torque and improved control compared to direct-drive motors. However, gear reduction introduces mechanical losses that can slightly impact the overall efficiency of the system. Direct-drive motors, on the other hand, provide high efficiency and compact design but may have limitations in terms of torque and speed range. Stepper motors and servo motors, both types of gear motors, excel in precise positioning applications but may have slightly lower efficiency compared to direct-drive motors. The selection of the most suitable motor type depends on the specific requirements of the application, balancing power, efficiency, speed range, and control capabilities.

gear motor

What is a gear motor, and how does it combine the functions of gears and a motor?

A gear motor is a type of motor that incorporates gears into its design to combine the functions of gears and a motor. It consists of a motor, which provides the mechanical power, and a set of gears, which transmit and modify this power to achieve specific output characteristics. Here’s a detailed explanation of what a gear motor is and how it combines the functions of gears and a motor:

A gear motor typically consists of two main components: the motor and the gear system. The motor is responsible for converting electrical energy into mechanical energy, generating rotational motion. The gear system, on the other hand, consists of multiple gears with different sizes and tooth configurations. These gears are meshed together in a specific arrangement to transmit and modify the output torque and speed of the motor.

The gears in a gear motor serve several functions:

1. Torque Amplification:

One of the primary functions of the gear system in a gear motor is to amplify the torque output of the motor. By using gears with different sizes, the input torque can be effectively multiplied or reduced. This allows the gear motor to provide higher torque at lower speeds or lower torque at higher speeds, depending on the gear arrangement. This torque amplification is beneficial in applications where high torque is required, such as in heavy machinery or vehicles.

2. Speed Reduction or Increase:

The gear system in a gear motor can also be used to reduce or increase the rotational speed of the motor output. By utilizing gears with different numbers of teeth, the gear ratio can be adjusted to achieve the desired speed output. For example, a gear motor with a higher gear ratio will output lower speed but higher torque, whereas a gear motor with a lower gear ratio will output higher speed but lower torque. This speed control capability allows for precise matching of motor output to the requirements of specific applications.

3. Directional Control:

Gears in a gear motor can be used to control the direction of rotation of the motor output shaft. By employing different combinations of gears, such as spur gears, bevel gears, or worm gears, the rotational direction can be changed. This directional control is crucial in applications where bidirectional movement is required, such as in conveyor systems or robotic arms.

4. Load Distribution:

The gear system in a gear motor helps distribute the load evenly across multiple gears, which reduces the stress on individual gears and increases the overall durability and lifespan of the motor. By sharing the load among multiple gears, the gear motor can handle higher torque applications without putting excessive strain on any particular gear. This load distribution capability is especially important in heavy-duty applications that require continuous operation under demanding conditions.

By combining the functions of gears and a motor, gear motors offer several advantages. They provide torque amplification, speed control, directional control, and load distribution capabilities, making them suitable for various applications that require precise and controlled mechanical power. Gear motors are commonly used in industries such as robotics, automotive, manufacturing, and automation, where reliable and efficient power transmission is essential.

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China Good quality ZD High Precision Low Backlash Spur or Helical Gear Planetary Speed Gear Reducer Gearbox For Servo Motor Steeping Motor with Best Sales

Product Description

ZD High Precision Low Backlash Spur or Helical Gear Planetary Speed Gear Reducer Gearbox For Servo Steeping Motor

Product Description

          Planetary gearbox is a kind of reducer with wide versatility. The inner gear adopts low carbon alloy steel carburizing quenching and grinding or nitriding process. Planetary gearbox has the characteristics of small structure size, large output torque, high speed ratio, high efficiency, safe and reliable performance, etc. The inner gear of the planetary gearbox can be divided into spur gear and helical gear. Customers can choose the right precision reducer according to the needs of the application.

Model Selection

Range Of Planetary Gearbox

 

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Company Profile

FAQ

Q: What’re your main products?
A: We currently produce Brushed Dc Motors, Brushed Dc Gear Motors, Planetary Dc Gear Motors, Brushless Dc Motors, Stepper motors, Ac Motors and High Precision Planetary Gear Box etc. You can check the specifications for above motors on our website and you can email us to recommend needed motors per your specification too.

Q: How to select a suitable motor?
A:If you have motor pictures or drawings to show us, or you have detailed specs like voltage, speed, torque, motor size, working mode of the motor, needed lifetime and noise level etc, please do not hesitate to let us know, then we can recommend suitable motor per your request accordingly.

Q: Do you have a customized service for your standard motors?
A: Yes, we can customize per your request for the voltage, speed, torque and shaft size/shape. If you need additional wires/cables soldered on the terminal or need to add connectors, or capacitors or EMC we can make it too.

Q: Do you have an individual design service for motors?
A: Yes, we would like to design motors individually for our customers, but it may need some mold developing cost and design charge.

Q: What’s your lead time?
A: Generally speaking, our regular standard product will need 15-30days, a bit longer for customized products. But we are very flexible on the lead time, it will depend on the specific orders.

Please contact us if you have detailed requests, thank you !

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Application: Motor, Machinery, Marine, Agricultural Machinery
Function: Change Drive Torque, Speed Changing, Speed Reduction, AGV, CNC Machine, Robot
Layout: Planetary Gear
Samples:
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1 Piece(Min.Order)

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Customization:
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induction motor

What role do AC motors play in HVAC (heating, ventilation, and air conditioning) systems?

In HVAC (heating, ventilation, and air conditioning) systems, AC motors play a crucial role in various components and functions. These motors are responsible for powering fans, compressors, pumps, and other essential equipment within the HVAC system. Let’s explore the specific roles of AC motors in HVAC systems:

  • Air Handling Units (AHUs) and Ventilation Systems: AC motors drive the fans in AHUs and ventilation systems. These fans draw in fresh air, circulate air within the building, and exhaust stale air. The motors provide the necessary power to move air through the ductwork and distribute it evenly throughout the space. They play a key role in maintaining proper indoor air quality, controlling humidity, and ensuring adequate ventilation.
  • Chillers and Cooling Towers: HVAC systems that use chillers for cooling rely on AC motors to drive the compressor. The motor powers the compressor, which circulates refrigerant through the system, absorbing heat from the indoor environment and releasing it outside. AC motors are also used in cooling towers, which dissipate heat from the chiller system by evaporating water. The motors drive the fans that draw air through the cooling tower and enhance heat transfer.
  • Heat Pumps: AC motors are integral components of heat pump systems, which provide both heating and cooling. The motor drives the compressor in the heat pump, enabling the transfer of heat between the indoor and outdoor environments. During cooling mode, the motor circulates refrigerant to extract heat from indoors and release it outside. In heating mode, the motor reverses the refrigerant flow to extract heat from the outdoor air or ground and transfer it indoors.
  • Furnaces and Boilers: In heating systems, AC motors power the blowers or fans in furnaces and boilers. The motor drives the blower to distribute heated air or steam throughout the building. This helps maintain a comfortable indoor temperature and ensures efficient heat distribution in the space.
  • Pumps and Circulation Systems: HVAC systems often incorporate pumps for water circulation, such as in hydronic heating or chilled water systems. AC motors drive these pumps, providing the necessary pressure to circulate water or other heat transfer fluids through the system. The motors ensure efficient flow rates and contribute to the effective transfer of thermal energy.
  • Dampers and Actuators: AC motors are used in HVAC systems to control airflow and regulate the position of dampers and actuators. These motors enable the adjustment of airflow rates, temperature control, and zone-specific climate control. By modulating the motor speed or position, HVAC systems can achieve precise control of air distribution and temperature in different areas of a building.

AC motors in HVAC systems are designed to meet specific performance requirements, such as variable speed control, energy efficiency, and reliable operation under varying loads. Maintenance and regular inspection of these motors are essential to ensure optimal performance, energy efficiency, and longevity of the HVAC system.

In conclusion, AC motors play vital roles in HVAC systems by powering fans, compressors, pumps, and actuators. They enable proper air circulation, temperature control, and efficient transfer of heat, contributing to the overall comfort, air quality, and energy efficiency of buildings.

induction motor

What are the safety considerations when working with or around AC motors?

Working with or around AC motors requires careful attention to safety to prevent accidents, injuries, and electrical hazards. Here are some important safety considerations to keep in mind:

  • Electrical Hazards: AC motors operate on high voltage electrical systems, which pose a significant electrical hazard. It is essential to follow proper lockout/tagout procedures when working on motors to ensure that they are de-energized and cannot accidentally start up. Only qualified personnel should perform electrical work on motors, and they should use appropriate personal protective equipment (PPE), such as insulated gloves, safety glasses, and arc flash protection, to protect themselves from electrical shocks and arc flash incidents.
  • Mechanical Hazards: AC motors often drive mechanical equipment, such as pumps, fans, or conveyors, which can present mechanical hazards. When working on or near motors, it is crucial to be aware of rotating parts, belts, pulleys, or couplings that can cause entanglement or crushing injuries. Guards and safety barriers should be in place to prevent accidental contact with moving parts, and proper machine guarding principles should be followed. Lockout/tagout procedures should also be applied to the associated mechanical equipment to ensure it is safely de-energized during maintenance or repair.
  • Fire and Thermal Hazards: AC motors can generate heat during operation, and in some cases, excessive heat can pose a fire hazard. It is important to ensure that motors are adequately ventilated to dissipate heat and prevent overheating. Motor enclosures and cooling systems should be inspected regularly to ensure proper functioning. Additionally, combustible materials should be kept away from motors to reduce the risk of fire. If a motor shows signs of overheating or emits a burning smell, it should be immediately shut down and inspected by a qualified professional.
  • Proper Installation and Grounding: AC motors should be installed and grounded correctly to ensure electrical safety. Motors should be installed according to manufacturer guidelines, including proper alignment, mounting, and connection of electrical cables. Adequate grounding is essential to prevent electrical shocks and ensure the safe dissipation of fault currents. Grounding conductors, such as grounding rods or grounding straps, should be properly installed and regularly inspected to maintain their integrity.
  • Safe Handling and Lifting: AC motors can be heavy and require proper handling and lifting techniques to prevent musculoskeletal injuries. When moving or lifting motors, equipment such as cranes, hoists, or forklifts should be used, and personnel should be trained in safe lifting practices. It is important to avoid overexertion and use proper lifting tools, such as slings or lifting straps, to distribute the weight evenly and prevent strain or injury.
  • Training and Awareness: Proper training and awareness are critical for working safely with or around AC motors. Workers should receive training on electrical safety, lockout/tagout procedures, personal protective equipment usage, and safe work practices. They should be familiar with the specific hazards associated with AC motors and understand the appropriate safety precautions to take. Regular safety meetings and reminders can help reinforce safe practices and keep safety at the forefront of everyone’s minds.

It is important to note that the safety considerations mentioned above are general guidelines. Specific safety requirements may vary depending on the motor size, voltage, and the specific workplace regulations and standards in place. It is crucial to consult relevant safety codes, regulations, and industry best practices to ensure compliance and maintain a safe working environment when working with or around AC motors.

induction motor

What is an AC motor, and how does it differ from a DC motor?

An AC motor, also known as an alternating current motor, is a type of electric motor that operates on alternating current. It converts electrical energy into mechanical energy through the interaction of magnetic fields. AC motors are widely used in various applications, ranging from household appliances to industrial machinery. Here’s a detailed explanation of what an AC motor is and how it differs from a DC motor:

AC Motor:

An AC motor consists of two main components: the stator and the rotor. The stator is the stationary part of the motor and contains the stator windings. These windings are typically made of copper wire and are arranged in specific configurations to create a rotating magnetic field when energized by an alternating current. The rotor, on the other hand, is the rotating part of the motor and is typically made of laminated steel cores with conducting bars or coils. The rotor windings are connected to a shaft, and their interaction with the rotating magnetic field produced by the stator causes the rotor to rotate.

The operation of an AC motor is based on the principles of electromagnetic induction. When the stator windings are energized with an AC power supply, the changing magnetic field induces a voltage in the rotor windings, which in turn creates a magnetic field. The interaction between the rotating magnetic field of the stator and the magnetic field of the rotor produces a torque, causing the rotor to rotate. The speed of rotation depends on the frequency of the AC power supply and the number of poles in the motor.

DC Motor:

A DC motor, also known as a direct current motor, operates on direct current. Unlike an AC motor, which relies on the interaction of magnetic fields to generate torque, a DC motor uses the principle of commutation to produce rotational motion. A DC motor consists of a stator and a rotor, similar to an AC motor. The stator contains the stator windings, while the rotor consists of a rotating armature with coils or permanent magnets.

In a DC motor, when a direct current is applied to the stator windings, a magnetic field is created. The rotor, either through the use of brushes and a commutator or electronic commutation, aligns itself with the magnetic field and begins to rotate. The direction of the current in the rotor windings is continuously reversed to ensure continuous rotation. The speed of a DC motor can be controlled by adjusting the voltage applied to the motor or by using electronic speed control methods.

Differences:

The main differences between AC motors and DC motors are as follows:

  • Power Source: AC motors operate on alternating current, which is the standard power supply in most residential and commercial buildings. DC motors, on the other hand, require direct current and typically require a power supply that converts AC to DC.
  • Construction: AC motors and DC motors have similar construction with stators and rotors, but the design and arrangement of the windings differ. AC motors generally have three-phase windings, while DC motors can have either armature windings or permanent magnets.
  • Speed Control: AC motors typically operate at fixed speeds determined by the frequency of the power supply and the number of poles. DC motors, on the other hand, offer more flexibility in speed control and can be easily adjusted over a wide range of speeds.
  • Efficiency: AC motors are generally more efficient than DC motors. AC motors can achieve higher power densities and are often more suitable for high-power applications. DC motors, however, offer better speed control and are commonly used in applications that require precise speed regulation.
  • Applications: AC motors are widely used in applications such as industrial machinery, HVAC systems, pumps, and compressors. DC motors find applications in robotics, electric vehicles, computer disk drives, and small appliances.

In conclusion, AC motors and DC motors differ in their power source, construction, speed control, efficiency, and applications. AC motors rely on the interaction of magnetic fields and operate on alternating current, while DC motors use commutation and operate on direct current. Each type of motor has its advantages and is suited for different applications based on factors such as power requirements, speed control needs, and efficiency considerations.

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We provide OEM services. Our merchandise are manufactured by modern computerized equipment and tools. Moreover, all our manufacturing procedures are in compliance with ISO9002 expectations.

Item Data
EPTTXiHu (West EPT) Dis.ng EPT EPT Customized Spur EPTcal EPT
Spur EPTs are extensively accepted as the most productive sort of EPTing remedy, when the application of transmitting EPTT and uniform rotary movement from 1 pXiHu (West EPT) Dis.Hu (West EPT) Dis.lel shaft to yet another is needed. DeterEPTd by the cEPTTr length, spur EPTs EPT a regular functioning pace EPT. This EPT speed can be lowered or elevated by the variable amount of tooth that eXiHu (West EPT) Dis.st in the driving EPT.

Many of our custom spur EPTs have been employed in EPT practice purposes – where a number of EPTs are needed to have the very same strain angle and diameter pitch. They are obtainable in plastic, non-metallic, brass, steel and solid iron.

Item Sort

Our helical EPT are employed for window EPTT, engraving EPTT, lift EPTT, opener rack, CNC EPTT, automobile, EPTT utilization so on.The main attributes of our helical EPT:
one Instantaneous EPT ratio continual
2 Massive selection of EPT ratios for deceleration or pace increase
three The EPTT efficiency is substantial. (A pair of large-precision involute cylindrical EPTs with an effectiveness of over ninety nine%)
4 Compact layout for quick-distance EPTT
five Reputable function and EPTT existence

EPTTngyin EPTTXiHu (West EPT) Dis.ng EPTTry EPT EPTT, Ltd. is a EPTTized supplier of a entire variety of motor shafts, EPTs, Flanges(Couplings), EPT racks, sprockets, pulley, EPTTd components and so on.

Thanks to our sincerity in supplying greatest service to our clients, understXiHu (West EPT) Dis.Hu (West EPT) Dis. of your needs and overriding sense of duty towards filling buying needs, we have attained the EPTT of consumers throughout the world. Obtaining accrued cherished encounter in cooperating with foreign clients, our goods are selling properly in the American, European, South American and Asian markets.Our goods are manufactured by contemporary computerized EPTTry and tools. Meanwhile, our products are created in accordance to substantial quality stXiHu (West EPT) Dis.Hu (West EPT) Dis.rds, and complying with the worldwide EPTd stXiHu (West EPT) Dis.Hu (West EPT) Dis.rd standards.

With numerous years’ encounter in this line, we will be EPTTed by our benefits in competitive price, a single-time shipping, prompt reaction, on-hand engineering support and very good soon after-revenue companies.

In addition, we also can design and style and make non-stXiHu (West EPT) Dis.Hu (West EPT) Dis.rd goods to meet up with customers’ EPTT specifications. EPTT and credit score are the bases that make a corporation alive. We will give ideal solutions and substantial quality merchandise with all sincerity. If you need any details or samples, you should get in touch with us and you will have our shortly reply.

FAQ
1)Are you buying and selling company or maker?
We are factory.

two)How can I customise my items?
Connect your drawing with information(surface treatment,content,amount and EPTT needs and so forth.)

three)How EPTT can I get the quotation?
We will give you the quotation in forty eight several hours(taking into consideration the time distinction)

4)How EPTT will you create the areas?
EPTTly it is five-10 daEPTTif the items are in inventory. Or it is fifteen-25 daEPTTif the items are not in inventory, it is according to quantity.

five)Do you offer samples? Is it free or extra?
Indeed, we could offer you the sample, the samples and transport EPTs need to be borne by the shopper.

six)What is your phrases of payment?
Payment le1000 USD, a hundred% in EPT. Payment ge1000 USD, thirty% T/T in EPT, stability prior to shipment. If you have any inquiries, please will not be reluctant to speak to us.

7)What if the merchandise we EPTd are not good?
Contact us with no hesitation, our EPTT after-sales service will get the accountability.

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In 2008, it was awarded with “National Export Commodity Inspection-cost-free Company”. “We are often serving our clients with our very best items.” We have exported our goods to Korea, Turkey, Bulgaria, Romania, Russia, Italy, Norway, the United states, Canada, and many others. It can be linked respectively with motors these kinds of as normal motor,brake motor,explosion-evidence motor,frequency conversion
motor,servo motor,IEC motor and so on. This kind of solution is extensively used in EPT fields such as textile,foodstuff,EPT
EPTT,EPT,plastics and so on. It is possible to established up the version needed making use of flanges or ft.

one Floor-hardened helical EPTs
two. Modularity, can be mixed in many forms
three. EPTT casing, ligEPTT fat
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five. EPT mounting
6. Refined layout, compact in framework and low noise

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With thorough requirments, we can also develop your special created product. We offer OEM provider. we offer 1-cease remedy for the purchase of mechanical power transmission items in China. Overview
———————————————————————————————————————————————————————————————————————————————–
Quick Details
EPTing Arrangement: EPTcal Model Name: EED
Enter Speed: 1400 rpm Output Speed: 4.8 rpm to 1075 rpm
Rated EPTT: .twelve ~ 160KW EPT Ratio: two.64-251.twenty five
EPTT: EPTT/Silver or on request Origin: EPTT, EPTT (Mainland)
Guarantee: one Year Software: Industry
———————————————————————————————————————————————————————————————————————————————–
EPT Capacity
EPT Capacity: 20000 Piece/Parts per Month
Added Support: OEM is welcome
QC System: ISO9001:2008
———————————————————————————————————————————————————————————————————————————————–
EPTT amp Shipping and delivery
Deal: EPTen box/Paper carton
Port: HangEPT/ZheJiang or on request
———————————————————————————————————————————————————————————————————————————————–

About XiHu (West EPT) Dis.ngda since 1984
HangEPT Melchizedek EPTTort amp Export EPTT, Ltd. is a leaEPTTmanufactur in mechanism field and punching/stamp
ing discipline since 1984. Our primary product, NMRV worm EPT pace EPTT and collection helical EPTT, XDR,
XDF, XDK, XDShave reached the EPTd approach index of the congeneric European and Janpanese produc
ts, We provide stXiHu (West EPT) Dis.Hu (West EPT) Dis.rd EPTs, sprockets, EPTs, pulleys, couplings, bushes and so on. We also can accept orders
of non-stXiHu (West EPT) Dis.Hu (West EPT) Dis.rd goods, these kinds of as EPTs, shafts, punching parts ect, according to customers’ Drawings or sam-
ples.

Our organization has full set of products incXiHu (West EPT) Dis.Hu (West EPT) Dis. CNC, lathes, milling EPTTs, EPT hobbing EPTT, g-
ear grinding EPTT, EPT honing EPTT, EPT shaping EPTT, worm grinder, grinding EPTTs, drilling m-
achines, boringEPTTs, planer, drawing benches, punches, EPT presses, plate shearing EPTTs and s-
o on. We have EPTd tests equipments also.

Our organization has estabEPTTd favorable cooperation associations with sub-suppliers involving casting, uncooked mat-
erial, heat remedy, surface finishing and so on.

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In the meantime, our goods are produced in accordance to substantial quality standards, and complying with the international advanced standard requirements. With EPG manufacturer registered in far more than 70 nations around the world like The united states , Europe , Japan and so on, it has associates amid globe best enterprises, this sort of as JOHNDEERE, NEW HOLLAND, CLAAS, HONDA, KUBOTA, YANMAR, and many others. More importantly, we make special parts in accordance to supplied drawings/samples and warmly welcome OEM inquiries. R Sequence EPTcal EPTT(EPTed EPT) with Foot Mounted or Flange Mounted :

EPT substance EPTT200 substantial-strength solid iron from R37,forty seven,fifty seven,67,seventy seven,87
EPT material EPTT250 EPT energy forged iron from R97 107,137,147,157,167
EPT hardness HBS90-240
EPT material: 20CrMnTi
Floor hardnesss of EPT EPTC58 deg-sixty two deg
EPT main hardness EPTC33 deg-forty deg
Input/Output shaft content 40Cr
Input/Output shaft hardness HBS241 deg-286 deg
Shaft at oil seal postion hardness EPTC48 deg -fifty five deg
Machining precision of EPTs materials Correct grinding 6-5 grade
Warmth treatment method tempering, cementing, quenching and many others
Efficiency More than ninety%
Sounds(Max) sixty-68dB
Unit product Foot mounted,flange mounted
Enter technique flange input,inline enter,shaft enter
Vibration le20um
Backlash le20Arcmin
EPTT manufacturers NSK,C ampU and so on
Oil seal makes NAK,SKF and many others
Lubricant VG220
EPT IP55, F class
EPT shaft 40Cr, Tempering, cementing,quenching and so forth.

one.Our Services

1.1.We supply twelve months Warranty.
one.two. We have thousands of EPTT EPTTs. From Input EPTT .06KW to 200KW, Ratio one.3-289.74, Output speed -1095rpm and Output torque one.4-62800Nm. They can meet up with your all distinct demands for diverse EPTT.
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1.four.You are welcome to go to our manufacturing unit to check out our goods,we can support you to ebook the resort or ticket

two.EPTT Data

two.one.Our EPTT:
The Predecessor for ZheJiang EPT EPTT,Ltd (originally known as HangEPT XiHu (West EPT) Dis.ngguang EPTT EPTTry EPTT,Ltd) Point out-owned military mould EPTTrpriese which estabEPTTd in 1965.

EPT is positioned in HangEPT,EPTT and the manufacturing unit addresses an region of about 25000 sq. meters.

Generation Capability:far more than half a million sets of pace EPTT for every calendar year.

2.two.Our Men and women:
The business has a sturdy technical power. It has far more than 400 staff at current, incXiHu (West EPT) Dis.Hu (West EPT) Dis. a lot more than forty engineering specialists and 10 specialists and senior engineers enEPTTing EPTT allowances of the Condition Council.

two.3. Our Certificates:
Handed quot ISO 9001 Worldwide EPTT Technique Certification quot, quotInternational EPTT Credit score AAA Ceritifacte quot , quot Swiss SGS Certification quot, Legendary Manufacturer in EPTT EPTT Market quot, quotFamous Manufacturer of ZheJiang Province quot, quotNon-general public Scientific and EPTnological EPTTrprise in ZheJiang Province quot, quotNational EPT and EPTT-tech EPTTrprise quot, quotTOP fifty in EPTT EPT Industry quot quot2011 HangEPT Engineering and EPTnological R ampD CEPTTr quot and so on.

three. FAQ

Q:Are you a buying and selling firm or company?
A: HangEPT EPT EPTT, Ltd previously was a State-owned XiHu (West EPT) Dis.ngguang Mildew Manufacturing unit, a state-owned armed forces EPTT EPTTrprise estabEPTTd in 1965. It finished reform in 2002. Given that reform, EPT has deveXiHu (West EPT) Dis.Hu (West EPT) Dis.ed speedily. It took the direct in passing ISO9001 Worldwide EPTT Method Certification and Worldwide EPTT Credit rating AAA Certificate in 2004, and Swiss SGS Certificate in 2009. It has won this kind of titles as quotIconic Model in EPTT EPTT Sector quot, quotFamous Manufacturer of ZheJiang Province quot, quotNon-community Scientific and EPTnological EPTTrprise in ZheJiang Province quot, quotNational EPT and EPTT-tech EPTTrprise quot, and quotTope fifty in EPTT EPT Sector quot successively

Q:Exactly where do you base?
A: We are in HangEPT,ZheJiang ,EPTT. We have two factories,EPTT manufacturing facility is in XiHu (West EPT) Dis.hu (West EPT) Dis. district,HangEPT,EPTT and the old 1 is in CHangEPT District,HangEPT,EPTT.

Q:What sorts of EPTT can you produce for us?
A:Major products of our business: JWB-X series mechanical constantly variable EPTT, RV collection worm EPT EPTT, B/JXJ cycloidal pin EPT pace EPTT, NCJ collection EPT EPTT, and R, F K, S series helical-tooth EPTT (SEW), a lot more than 1 hundred models and 1000’s of technical specs.

Q:What are the application of the EPTT?
A:EPT are broadly utilized in ceramic, EPT, meals, metallurgy, beer amp drink, printing and dyeing, textile, petrochemical engineering, warehouse EPT, wooden-doing work EPTT, environmental defense gear, printing and EPTT, pharmacy, and leather-based. EPT are offered in some countries and locations, these kinds of as Europe, The usa, and SouthEPT Asia, and it possesses dozens of distributors and following-sale services brokers.

Q:What is the content you use?

A1: EPTT EPT entire body ( For the RV series worm EPTT Size 30~ninety)

A2: Cast iron(For the RV collection worm EPTT, Measurement 110-150, For the NCJ amp F/R/S/K series helical EPT EPTT)

Our manufacturing facility (ZheJiang EPT EPTT, Ltd.) is a massive and renowned 6S stXiHu (West EPT) Dis.Hu (West EPT) Dis.rd EPTT manufacturing facility with around 380 staff considering that 1965 . We export to South Asia, SouthEPT Asia, Africa, Center EPT, South The usa, North The united states, Europe…etc. We offer EPTT to SIEMENS,ABB,SACMI,BUHLER,MODENA,EPT…etc. EPTly hope to set up a win-get company relationship with you.

Anticipating to discuss about much more specifics with you !

EPTT Wishes

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Quality and credit score are the bases that make a company alive. The higher precise CNC equipment, such as Gradual-feeding wire-cut machine, jig grinding machine and electric powered discharge machine, ensures the leading top quality precision of mould processing, with the higher productive and environmental safety acid rolling line getting the greatest raw content changing equipment in the subject in china The wildly use of automatic milling machine, substantial-speed computerized feeding punch, higher velocity automatic rolling and assembling machine guarantees the large quality and performance of components and chain producing. Our goods are used in numerous fields. AC Three three Period 240V 400V PXiHu (West Lake) Dis.Hu (West Lake) Dis.let shaft Helical EPT Gear EPT

Features:
1. Compact composition and straightforward assembly
2. Extensive velocity ranges and large torque
3. Minimal sound, excellent sealing functionality, higher efficiency
4. Stable and secure, EPT lifetime, EPT
five. Multi-structure, a variety of assembling approaches

Product photo:

Specification:

ANG Helical Gear EPT
Model R17 ~ 187, F37-177, K37-187, S37-97
Enter EPT .06kw ~ 250kw
Input pace 750rpm ~ 3000rpm
Reduction ratio one/one.3 ~ 1/27000
Enter motor AC (1 section or three phase) / DC / EPTLDC motor
Set up variety Foot / Reliable shaft / Hollow shaft / Output flange #8230
Performance 94% ~ ninety eight % for R F K sequence
EPT of housing die-solid aluminum / Cast iron / Stainless metal
EPT of equipment Correct grinding, course six
Heat treatment Carburizing and quenching
Equipment EPTrake / Flange / EPT adapter / Torque arm #8230

FAQ

Q: Can you make the gear motor with customization?
A: Indeed, we can personalize per your request, like EPT, voltage, speed, shaft dimensions, flange, terminal box, IP grade, etc.

Q: Do you provide samples?
A: Yes. Sample is available for screening.

Q: What is your MOQ?
A: It is 1pcs for the commencing of our organization.

Q: What is your guide time?
A: StXiHu (West Lake) Dis.Hu (West Lake) Dis.rd product need five-30days, a little bit EPTer for personalized goods.

Q: Do you offer EPT assistance?
A: Sure. Our organization have style and deveXiHu (West Lake) Dis.Hu (West Lake) Dis.ment staff, we can supply EPT help if you
want.

Q: How to ship to us?
A: It is available by air, or by sea, or by prepare.

Q: How to spend the money?
A: T/T and L/C is favored, with various forex, incXiHu (West Lake) Dis.Hu (West Lake) Dis. USD, EUR, RMEPT, etc.

Q: How can I know the item is ideal for me?
A: gt1ST confirm drawing and specification gt2nd take a look at sample gt3rd start off mass creation.

Q: Can I arrive to your business to check out?
A: Of course, you are welcome to check out us at any time.

Q: How shall we get in touch with you?
A: You can deliver inquiry directly, and we will answer inside 24 hours.

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Furthermore, all our production processes are in compliance with ISO9002 standards. If you are fascinated in any of our items or would like to go over a prospective buy, make sure you come to feel totally free to get in touch with us. With thorough requirments, we can also develop your unique developed solution.

R series helicalgear motoreductor helical EPTl gear motor cyclo EPT redutor cradle EPT EPT EPT

Product Description
SLR helical EPT has the features of large versaEPTty,excellent blend and large loading ability, aEPT with other merits these kinds of as simple to attain various EPT ratios, higher performance, reduced vibrationand substantial permissible aXiHu (West Lake) Dis.s radial load. This sequence can not only be blended with numerous varieties of EPTs and variators and satisfy the needs, but also beadvantage of localization of associated EPT tools.

Specs:
1) Output speed: .6~one,571r/min
2) Output torque: up to 18,000N.m
3) Motor EPT: .eighteen~160kW
4) Mounted form: foot-mounted and flange-mounted mounting

Product Title

SLR Sequence Rigid Tooth helical EPT

Equipment Content

20CrMnTi

Circumstance Materials

EPT250

Shaft Substance

20CrMnTi

Gear Processing

Grinding complete by HOFLER Grinding EPTs

Colour

Tailored

Noise Examination

EPTellow 65dEPT

Organization info

EstabEPTd in 1985, SANLIAN EPT EPTRY CO., LTD is a higher and new EPT EPTrprise participating in investigation, deveXiHu (West Lake) Dis.Hu (West Lake) Dis. and manufacture for EPT amp velocity variator, 1 of the director member of EPT EPT Association of EPT EPT EPTry.
It handles much more than forty,000 square meters, has far more than four hundred employees , 20% of whom are technicians, equipped with far more than 300 sets the most sophisticated correct numerical control equipment, incXiHu (West Lake) Dis.Hu (West Lake) Dis. German HOFLER forming equipment grinding EPT to enhance high quality.
established up far more than 30 nationwide product sales branches to provide our customers in time and thoroughly.
Our products also exported to a lot more than thirty nations major in Europe, Asia The united states, and Africa, with higher reputation.

EPT handle

EPT ampDelivery

EPT Particulars: StXiHu (West Lake) Dis.Hu (West Lake) Dis.rd carton/Pallet/StXiHu (West Lake) Dis.Hu (West Lake) Dis.rd wooden circumstance

Shipping Information : fifteen-thirty functioning daEPTupon payment


Connected Merchandise

Precision Planetary EPT Robotic RV EPT speed EPT
Custom manufactured Non-stXiHu (West Lake) Dis.Hu (West Lake) Dis.rd EPT UDL Sequence Variator
PYZ Series Helical Tooth Shaft Mounted EPT 8000 Collection Cycloidal EPT
SLT Collection Spiral EPTl EPT SLSWL Collection Worm Screw Jack
SLP Sequence Planetary EPT SLH/SLEPT Series Substantial EPT EPT
NMRV Collection Worm EPT EPTKM Series Helical-hypoid EPT
SLRC Series Helical EPT SLSMR Series Shaft Mounted EPT
SLXG Series Shaft Mounted EPT X/EPT Series Cycloidal EPT
SLR/SEPT/SLK/SLS Sequence Helical EPT AC/DC Motor

Major item list: sixteen collection incXiHu (West Lake) Dis.Hu (West Lake) Dis. SLR/SLS/SLK/SEPT collection hard tooth flank gear EPT , SLRC collection aluminium circumstance helical gear EPTs,SLHSLEPT collection higher EPT pace EPT, SLP collection planetary pace EPT, X/EPT sequence cycloidal EPT, SLXG sequence shaft-mounted gear box, SLSWL series worm screw jack, SLT collection helical cone gear box, entirely far more than ten,000 ratios, different specification make us at the head of domestic EPT business, extensively serve the mechanical EPT subject of ligEPT amp large business such as: beer amp EPTrage, mining EPT, meals EPT, textile printing, rubber amp plastic material, petrochemical sector, jack-up transportation, pharmacy amp method hides, environmental security gear.


Certificate

FAQ

one.Payment Term: TT, L/C

2.Delivery time: about thirty daEPTfrom EPT payment.

three.We accept tailored merchandise as per your EPT prerequisite.

4.XiHu (West Lake) Dis.hu (West Lake) Dis.strains for the Variety:Usually we can select one EPT which is ideal for you with some informations from you,this kind of as ratio/motor velocity/mounting dimension/ out torque and so forth.

5.If the minimum orEPTamount is in surplus of $ten thousand, there are preferential.

Q1: What details ought to I notify you to verify the merchandise?

A:Product/Dimensions, EPT Ratio, Shaft instructions amp OrEPTquantity.

Q2: What can i do if I never know which one EPT?

A:Dont fret, Send out as considerably details as you can, our staff will support you uncover the rigEPT a single you are seeking for.

Q3: What is your product guarantee period of time?

A:We offer you one 12 months guarantee considering that the vessel departure day remaining EPT.

This autumn: Are you buying and selling business or company ?

A: We are manufacturing unit.

Q5: How EPT is your supply time?

A: EPTly it is five-10 daEPTif the items are in inventory. or it is fifteen-20 daEPTif the merchandise are not in inventory, it is in accordance to amount.

Q6: Do you offer samples ? is it free of charge or extra ?

A: Of course, we could offer the sample for cost-free cost but do not pay the value of freight.

Q7: What is your terms of payment ?

A: Payment lt=1000USD, one hundred% EPT. Payment gt=1000USD, thirty% T/T EPT ,balance before shippment.

If you have another concern, pls come to feel free of charge to speak to us as under:

Contact Us

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