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China Best Sales Ie1 Ie2 380V Iron Housing 5.5kw Premium High Efficiency Induction Asynchronous AC Motor with high quality

Product Description

GEXIN Y2 Series Three-Phase Asynchronous Induction Electrical Motor 

Gexin Electromechanical Co.,Ltd.is a company specializing in the production and processing of YC MS,YD, YCT, YEJ, YVF, YBE4, Y. YE2,YE3 .YE4 and other three-phase asynchronous motors. It has a strong R&D team, and the motor produced by the company is brand new, with national standard stator and rotor and all copper. Product 3c certification, strict technology, each processed part has passed the incoming QC, and the manufacturing process inspection. With rich production experience and advanced production equipment, the company has established long-term cooperative relations with many enterprises with strong strength, reasonable price and high-quality service. Business is sincere, and being the first person in business is our aim.
 

Product Description

 

    Y2 series three-phase asynchronous motor is Y series motor the upgrading of product, is the totally enclosed, fan-cooled induction motor for general purpose .It was the newest product in the 90S’ ,its overall level has reached the same products abroad at the beginning of 90S’level. The product apply to economic lake off  fields, such as machine tools, water pump, fan, compressor, also can be applied to transportation, stirring, printing, agricultural machinery, food and other kinds of excluding inflammable, explosive or corrosive gas.

   Y2 series three phase asynchronous motor installation size and power grade in conformity with relevant standards of IEC and Germany DIN42673 standard line and Y series motor, its shell protection grade for IP54, cooling method for IC41l, operate continuously (S1). Using F insulation class and grade B assessment according to temperature (except for 315 L2-2, 4355 all specifications F grade the assessment, and ask the assessment load noise index.

   Y2 series three- phase asynchronous motor the rated voltage is 380 V. rated frequency is 50 Hz. 3 KW the following connection is Y , other power are delta connection . Motor running the place at no more than 1000 m; Environment air temperature changes with seasons, but no more than 40 °C; Minimum environment air temperature is15 °C; The wet month average high relative humidity is 90%; At the same time, this month is not higher than the lowest average temperature 25 °C.

 

Applications: Can be applied in the machines where continuous duty is required, typical applications like

  • Pumps
  • Fans
  • Compressors
  • Lifting equipment
  • Production industry

 

Motor Features:

1. Frame size:H80-355;
2. Power:0.75-315KW;
3. Voltage:220-660V;
4. Rated Frequency: 50 Hz / 60 Hz;
5. Poles: 2 / 4 / 6 /8 /10
6. Speed: 1000 -3000 r/min
7. Ambient Temperature: -15°C-40°C 
8. Model of CONEECTION: Y-Connection for 3 KW motor or less while Delta-Connection for 4 KW motor or more;
9. Mounting:  B3; B5; B35;
10. Current: 1.5-465 A (AC);
11. Duty: continuous (S1);
12. Insulation Class:  F;
13. Protection Class:  IP54,IP55;
14. Frame material: Cast iron body ;
15. Terminal box : Top or Side 
16. Cooling Method: IC411 Standards;
17. Altitude: No more than 1,000 meters above sea level;
18. Packing: 80-112 frame be packaged by carton&pallets
                   132-355 frame be packaged by wooden case;
19. 
Certifications: CE, CCC, ISO9001: 2008

 

Operating Conditions
Ambient temperature -15ºC≤θ≤40ºC
Altitude Not exceeding 1000m
Rated voltage                                                                                                  380V    or  any voltage between 220-760V                                                                    

 

Rated frequency 50Hz/60Hz
Protection class IP55
lnsulation Class Class F/H
Cooling method ICO141
Duty S1 ( continuous)
Connection Start-connection for up to 3kw,  delta-connection for 4kw and above.

 

Installation Instructions

Installation Diemsions

 

 

 

 

Advantage


* 100% Copper wire,100%  Power Output;

* Competitive Price;

* 100% test after each process and final test before packing;

* 20Years Manufacture Experience;

* Energy saving;

* Superior Life;

* Quiet Operation;

* Easy maintance;

* Be made of selected quality materals.latest design in entirety;

* OEM Service ;

* CE/ISO Approved; 

* 20-30days lead time;

* Main Market: South America, Middle East, Southest Asia, Europe,Africa and so on;  

* Have Rich Experience and Strong ability to Develop New Products;

* Have Ability to Design the Products Based on Your Original Samples;

Quality Assurance:

1 year quality warranty and fast after-sales service.
 

Manufacturing process:

  • Stamping of lamination
  • Rotor die-casting
  • Winding and inserting – both manual and semi-automatically
  • Vacuum varnishing
  • Machining shaft, housing, end shields, etc…
  • Rotor balancing
  • Painting – both wet paint and powder coating
  • Motor assembly
  • Packing
  • Inspecting spare parts every processing
  • 100% test after each process and final test before packing

Product Parameters

 

Type Rated Power Rated Current(A) Rated Speed(r/min) Efficiency(%) Power Factor(CosΦ)
KW HP
380V 50HZ Synchronous Speed 3000r/min(2Poles)
Y2-80M1-2 0.75 1 1.81 2830 75.0 0.84
Y2-80M2-2 1.1 1.5 2.52 2830 77.0 0.86
Y2-90S2-2 1.5 2 3.44 2840 78.0 0.85
Y2-90L-2 2.2 3 4.83 2840 80.5 0.86
Y2-100L-2 3.0 4 6.39 2870 82.0 0.87
Y2-112M-2 4.0 5.5 8.17 2890 85.5 0.87
Y2-132S1-2 5.5 7.5 11.1 2900 85.5 0.88
Y2-132S2-2 7.5 10 15.0 2900 86.2 0.88
Y2-160M1-2 11 15 21.8 2930 87.2 0.88
Y2-160M2-2 15 20 29.4 2930 88.2 0.88
Y2-160L-2 18.5 25 35.5 2930 89.0 0.89
Y2-180M-2 22 30 42.2 2940 89.0 0.89
Y2-200L1-2 30 40 56.9 2950 90.0 0.89
Y2-200L2-2 37 50 69.8 2950 90.5 0.89
Y2-225M-2 45 60 83.9 2970 91.7 0.89
Y2-250M-2 55 75 103 2970 91.5 0.89
Y2-280S-2 75 100 139 2970 92.0 0.89
Y2-280M-2 90 125 166 2970 92.5 0.89
Y2-315S-2 110 150 203 2980 92.5 0.89
Y2-315M-2 132 180 242 2980 93.0 0.89
Y2-315L1-2 160 200 292 2980 93.5 0.89
Y2-315L2-2 200 270 365 2980 93.5 0.89
Y2-355M-2 250 340 444 2980 94.5 0.90
Y2-355L-2 315 430 556 2980 95.0 0.90
380V 50HZ Synchronous Speed 1500r/min(4Poles)
Y2-80M1-4 0.55 0.75 1.51 1390 73.0 0.76
Y2-80M2-4 0.75 1 2.01 1390 74.5 0.76
Y2-90S-4 1.1 1.5 2.75 1400 78.0 0.78
Y2-90L-4 1.5 2 3.65 1400 79.0 0.79
Y2-100L1-4 2.2 3 5.03 1430 81.0 0.82
Y2-100L2-4 3.0 4 6.82 1430 82.5 0.81
Y2-112M-4 4.0 5.5 8.77 1440 84.5 0.82
Y2-132S-4 5.5 7.5 11.6 1440 85.5 0.84
Y2-132M-4 7.5 10 15.4 1440 87.0 0.85
Y2-160M-4 11 15 22.6 1460 88.0 0.84
Y2-160L-4 15 20 30.3 1460 88.5 0.85
Y2-180M-4 18.5 25 35.9 1470 91.0 0.86
Y2-180L-4 22 30 42.5 1470 91.5 0.86
Y2-200L-4 30 40 56.8 1470 92.2 0.87
Y2-225S-4 37 50 70.4 1480 91.8 0.88
Y2-225M-4 45 60 84.2 1480 92.3 0.88
Y2-250M-4 55 75 103 1480 92.6 0.88
Y2-280S-4 75 100 140 1480 92.7 0.88
Y2-280M-4 90 125 164 1480 93.5 0.89
Y2-315S-4 110 150 201 1480 93.5 0.89
Y2-315M-4 132 180 240 1490 94.0 0.89
Y2-315L1-4 160 200 289 1490 94.5 0.89
Y2-315L2-4 200 270 361 1490 94.5 0.89
Y2-355M-4 250 340 459 1485 94.7 0.87
Y2-355L-4 315 430 576 1485 95.2 0.87
380V  50HZ  Synchronous Speed 1000r/min (6Poles)
Y2-80M1-6 0.37 0.55 1.2 900 70.5 0.68
Y2-80M2-6 0.55 0.75 1.45 900 71.5 0.68
Y2-90S-6 0.75 1 2.25 910 72.5 0.70
Y2-90L-6 1.1 1.5 3.16 910 73.5 0.72
Y2-100L-6 1.5 2 3.97 940 77.5 0.74
Y2-112M-6 2.2 3 5.61 940 80.5 0.74
Y2-132S-6 3 4 7.23 960 83.0 0.76
Y2-132M1-6 4 5.5 9.40 960 84.0 0.77
Y2-132M2-6 5.5 7.5 12.6 960 85.3 0.78
Y2-160M-6 7.5 10 17.0 970 86.0 0.78
Y2-160L-6 1.1 15 24.6 970 87.0 0.78
Y2-180L-6 15 20 31.4 970 89.5 0.81
Y2-200L1-6 18.5 25 37.7 970 89.8 0.83
Y2-200L2-6 22 30 44.6 970 90.2 0.83
Y2-225M-6 30 40 59.5 980 90.2 0.85
Y2-250M-6 37 50 72 980 90.8 0.86
Y2-280S-6 45 60 85.4 980 92.0 0.87
Y2-280M-6 55 75 104 980 92.0 0.87
Y2-315S-6 75 100 141 990 92.8 0.87
Y2-315M-6 90 125 169 990 93.2 0.87
Y2-351L1-6 110 150 206 990 93.5 0.87
Y2-315L2-6 132 180 246 990 93.8 0.87
Y2-355M1-6 160 200 300 990 94.1 0.86
Y2-355M2-6 200 270 374 990 94.3 0.86
Y2-355L-6 250 340 465 990 94.7 0.86
380V 50HZ Synchronous Speed 750r/min (8Poles)
Y2-132S-8 2.2 3 5.85 710 80.5 0.71
Y2-132M-8 3 4 7.72 710 82.0 0.72
Y2-160M1-8 4 5.5 9.91 720 84.0 0.73
Y2-160M2-8 5.5 7.5 13.3 720 85.0 0.74
Y2-160L-8 7.5 10 17.7 720 86.0 0.75
Y2-180L-8 11 15 24.8 730 87.5 0.77
Y2-200L-8 15 20 34.1 730 88.0 0.76
Y2-225S-8 18.5 25 41.3 730 89.5 0.76
Y2-225M-8 22 30 47.6 730 90.0 0.78
Y2-250M-8 30 40 63.0 740 91.0 0.80
Y2-280S-8 37 50 78.0 740 91.7 0.79
Y2-280M-8 45 60 93.2 740 92.0 0.80
Y2-315S-8 55 75 114 740 92.5 0.80
Y2-315M-8 75 100 152 740 93.0 0.81
Y2-315L1-8 90 125 179 740 93.3 0.82
Y2-315L2-8 110 150 218 740 93.8 0.82
Y2-355M1-2 132 180 260 740 93.7 0.81
Y2-355M2-8 160 200 314 740 94.0 0.81
Y2-355L-8 200 270 392 740 94.3 0.81

Gexin Electromechanical Co., Ltd., which has 150 employees, an annual output value of $1800w and an area of 26000 square meters.

 

FAQ

1: Are you a factory or just a trading company?

A1: Manufacturer,and we focus on the development and production of electric motors for more than 20 years.

 

Q2: Is customized service available?

A2: Of course, OEM & ODM both are available.

 

Q3: How can I get the quotation?

A3: Leave us message with your purchase requirements and we will reply you within 1 hour on working time. And you may contact us directly by Trade Manager.

 

Q4:Can I buy 1 as sample?

A4: Yes, of course.

 

Q5: How about your quality control?

A5: Our professional QC will check the quality during the production and do the quality test before shipment.

Q6: What is your payment term?

A6: 30% T/T in advance, 70% balance when receiving B/L copy Or 100% irrevocable L/C at sight.
 

Q7: What is your lead time?

A7: About 20-30 days after receiving advance deposit or original L/C.
 

Q8: What certificates do you have?

A8: We have CE, ISO. And we can apply for specific certificate for different country such as SONCAP for Nigeria, COI for Iran, SASO for Saudi Arabia, etc.
 

Q9: What warranty do you provide?

A9: One year, during the guarantee period, we will supply freely of the easy damaged parts for the possible problems except for the incorrect operation. After expiration, we supply cost spare parts for alternator maintenance.

 

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Application: Industrial, Household Appliances, Power Tools
Operating Speed: High Speed
Number of Stator: Three-Phase
Species: Ms Series Three-Phase
Rotor Structure: Winding Type
Casing Protection: Closed Type
Samples:
US$ 130/Piece
1 Piece(Min.Order)

|

Customization:
Available

|

Are there specific maintenance requirements for AC motors to ensure optimal performance?

Yes, AC motors have specific maintenance requirements to ensure their optimal performance and longevity. Regular maintenance helps prevent unexpected failures, maximizes efficiency, and extends the lifespan of the motor. Here are some key maintenance practices for AC motors:

  1. Cleaning and Inspection: Regularly clean the motor to remove dust, dirt, and debris that can accumulate on the motor surfaces and hinder heat dissipation. Inspect the motor for any signs of damage, loose connections, or abnormal noise/vibration. Address any issues promptly to prevent further damage.
  2. Lubrication: Check the motor’s lubrication requirements and ensure proper lubrication of bearings, gears, and other moving parts. Insufficient or excessive lubrication can lead to increased friction, overheating, and premature wear. Follow the manufacturer’s guidelines for lubrication intervals and use the recommended lubricants.
  3. Belt and Pulley Maintenance: If the motor is coupled with a belt and pulley system, regularly inspect and adjust the tension of the belts. Improper belt tension can affect motor performance and efficiency. Replace worn-out belts and damaged pulleys as needed.
  4. Cooling System Maintenance: AC motors often have cooling systems such as fans or heat sinks to dissipate heat generated during operation. Ensure that these cooling systems are clean and functioning properly. Remove any obstructions that may impede airflow and compromise cooling efficiency.
  5. Electrical Connections: Regularly inspect the motor’s electrical connections for signs of loose or corroded terminals. Loose connections can lead to voltage drops, increased resistance, and overheating. Tighten or replace any damaged connections and ensure proper grounding.
  6. Vibration Analysis: Periodically perform vibration analysis on the motor to detect any abnormal vibrations. Excessive vibration can indicate misalignment, unbalanced rotors, or worn-out bearings. Address the underlying causes of vibration to prevent further damage and ensure smooth operation.
  7. Motor Testing: Conduct regular motor testing, such as insulation resistance testing and winding resistance measurement, to assess the motor’s electrical condition. These tests can identify insulation breakdown, winding faults, or other electrical issues that may affect motor performance and reliability.
  8. Professional Maintenance: For more complex maintenance tasks or when dealing with large industrial motors, it is advisable to involve professional technicians or motor specialists. They have the expertise and tools to perform in-depth inspections, repairs, and preventive maintenance procedures.

It’s important to note that specific maintenance requirements may vary depending on the motor type, size, and application. Always refer to the manufacturer’s guidelines and recommendations for the particular AC motor in use. By following proper maintenance practices, AC motors can operate optimally, minimize downtime, and have an extended service life.

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.

Can you explain the basic working principle of an AC motor?

An AC motor operates based on the principles of electromagnetic induction. It converts electrical energy into mechanical energy through the interaction of magnetic fields. The basic working principle of an AC motor involves the following steps:

  1. The 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. The rotor is the rotating part of the motor and is connected to a shaft.
  2. When an alternating current (AC) is supplied to the stator windings, it creates a changing magnetic field.
  3. The changing magnetic field induces a voltage in the rotor windings, which are either short-circuited conductive bars or coils.
  4. The induced voltage in the rotor windings creates a magnetic field in the rotor.
  5. The magnetic field of the rotor interacts with the rotating magnetic field of the stator, resulting in a torque force.
  6. The torque force causes the rotor to rotate, transferring mechanical energy to the connected shaft.
  7. The rotation of the rotor continues as long as the AC power supply is provided to the stator windings.

This basic working principle is applicable to various types of AC motors, including induction motors and synchronous motors. However, the specific construction and design of the motor may vary depending on the type and intended application.


editor by CX 2024-04-04

ep

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