Product Description

Product Description

1.Motor Introduction 
YB3 series explosion proof three-phase asynchronous motor is the basic explosion proof motor product that is developed by combining current market and domestic explosion proof motor industry. Basing on YB3 basic series motor, we may derive it into many kinds of explosion proof motors such as YB2-W outdoor type.YB3-WTH outdoor humid&tropic type etc. 
 
2.Specifications 
YB3  series ie2 standard Explosion-proof electric motor motor with CE certification
Technical parameters:
1.Frame size:H63~355
2.Rated power:0.18KW~355KW
3.Rated voltage:220/380/660V or on request
 
4.Rated Frequency: 50 Hz / 60 Hz;
5. Poles: 2 
6. Speed: 2970r/min,1450RPM,980RPM,730RPM,590RPM
 
7. Ambient Temperature: -15°C-40°C 
8. Model of CONEECTION: Y-Connection for under 3 KW motor while Delta-Connection for above 4KW motor;
9. Mounting:  B3; B35; B34; B14; B5; V1;
 
10. Current: 82A (AC);
11. Duty: continuous (S1);
12. Insulation Class:  F;
 
13. Protection Class:  IP55;
14. Cooling Method: IC411;
15. Altitude: No more than 1,000 CHINAMFG above sea level;
16. Packing: 63-132 frame be packaged by carton&pallets
           160-355 frame be packaged by plywood case;
17. EX-mark: Exd I, Exd II AT4, Exd II BT4.

We are specialized in manufacturing Three Phase Electric Motor, YB3 Induction motor, Explosion-Proof Motor, ,Electric Motor, induction Electric Motor, Three Phase Electric Motor,Ac Motors, Three Phase Motor, 90kw Motor, Induction Motors, Bicycle Electric Motor, Three-Phase Electric Motor, 3 Phase Motor, Explosion-Proof Motor, General Motor, Electromotor, Synchronous Motors, Three Phase Asynchronous Motor, Machine Motor, Yc Series, Ac Geared Motor, Shutter Motor, Electric Gate Motor, Aluminium Body Motor.

YB3 Series Explosion-Proof Three Phase Electric Motors have such characteristics as high efficiency, low noise level and vibrafion, high startu torque reliable operation. The rated voltageis 380V, 660V, 380/660V, 660/1140V. The rated frequency is 50HZ or 60HZ, the power grade and mounting dimensions of the motor are same as Y2 series motors comply with IEC standard. The degree ofprotact is IP55, and the cooling method is IC411, class F insulation, they can operate constanntly at the environment at temperature of not higher than 40 degree, the eletrical performance index of YB3 series motors are same as Y2 series motors. 

The explosion protect performance ofmotors comply with GB3836.1-2000″Electrical apparatus for explosive atmosphaere General requirments” and GB3836.2-2000″Electrical apparatus for explosive atmospheres, explosion-proof electrical apparatus”d” and also complywith IEC standard, it is used in the places where the ecplosive gasmixture is exisiting. 

Operating Conditions:

Ambient temperature: -15 ≤ 40

Altitude: Altitude should be lower than 1000meters above sea level. 

Rated voltage: 380V Rated frequency: 50Hz, 60HZ

Connection: Star-connection for 3KW or less whereas delta-connection for 4KW or more. 

Duty/Rating: Conntinuous(S1). 

Insulation class: F, the temperature rise of the stator winding is examined at 80K(by resistance method). 

Protection class: The main body of the motor is  IP55

Cooling method: IC411. 

MOTOR PIC:

3.Performance Datas

     Model Power
(KW)
  Rated Current
   (A)
Rotating Speed
(RPM)
Eff.
(%)
Power Factor Stall torque
Rated torque
Stall current
Rated current
Maximum torque
Rated torque
Synchronous speed 3000r/min
YB3-631-2 0.18 0.53 2720 66.0 0.80 2.2 5.0 2.3
YB3-632-2 0.25 0.69 2720 68.0 0.81 2.2 5.0 2.3
YB3-711-2 0.37 0.99 2740 70.0 0.81 2.2 5.5 2.3
YB3-712-2 0.55 1.4 2740 73.0 0.83 2.2 5.5 2.3
YB3-801-2 0.75 1.8 2845 75.0 0.83 2.2 6.0 2.3
YB3-802-2 1.1 2.6 2845 78.0 0.84 2.2 6.0 2.3
YB3-90S-2 1.5 3.4 2840 79.0 0.84 2.2 7.0 2.3
YB2-90L-2 2.2 4.9 2840 81.0 0.85 2.2 7.0 2.3
YB3-100L-2 3 6.3 2860 83.0 0.88 2.2 7.0 2.3
YB3-112M-2 4 8.1 2880 85.0 0.88 2.2 7.0 2.3
YB3-132S1-2 5.5 11.0 2900 86.0 0.88 2.2 7.5 2.3
YB3-132S2-2 7.5 14.9 2900 87.0 0.88 2.2 7.5 2.3
YB3-160M1-2 11 21.3 2930 88.0 0.88 2.2 7.5 2.3
YB3-160M2-2 15 28.8 2930 89.0 0.89 2.2 7.5 2.4
YB2-160L-2 18.5 34.7 2930 89.0 0.89 2.2 7.5 2.4
YB2-180M-2 22 41.0 2940 90.5 0.90 2.0 7.5 2.3
YB2-200L1-2 30 55.5 2950 91.2 0.90 2.0 7.5 2.4
YB3-200L2-2 37 67.9 2950 92.0 0.90 2.0 7.5 2.4
YB3-225M-2 45 82.3 2960 92.5 0.90 2.2 7.5 2.3
YB3-250M-2 55 100 2965 92.5 0.90 2.1 7.5 2.3
YB3-280S-2 75 135 2970 93.2 0.90 2.0 7.5 2.3
YB3-280M-2 90 160 2970 93.8 0.91 1.8 7.0 2.3
YB3-315S-2 110 195 2975 94.0 0.91 2.2 7.5 2.3
YB3-315M-2 132 233 2975 94.5 0.91 1.8 7.0 2.3
YB3-315L1-2 160 279 2975 94.6 0.92 1.8 7.0 2.3
YB3-315L2-2 200 348 2975 94.8 0.92 1.8 7.0 2.3
YB3-355S1-2 185 323 2980 94.6 0.92 1.8 7.0 2.3
YB3-355S2-2 200 348 2980 94.8 0.92 1.8 7.0 2.3
YB3-355M1-2 220 383 2980 94.8 0.92 1.6 4.0 2.4
YB3-355M2-2 250 433 2980 95.3 0.92 1.6 7.0 2.4
YB3-355L1-2 280 485 2980 95.3 0.92 1.6 7.0 2.4
YB3-355L2-2 315 544 2980 95.6 0.92 1.6 7.0 2.4
YB3-631-4 0.12 0.44 1310 58.0 0.72 2.0 4.0 2.2
YB3-632-4 0.18 0.62 1310 63.0 0.73 2.0 4.0 2.2
YB3-711-4 0.25 0.79 1330 66.0 0.74 2.0 4.0 2.2
YB3-712-4 0.37 1.12 1330 69.0 0.75 2.0 4.0 2.2
YB3-801-4 0.55 1.6 1390 71.0 0.75 2.4 5.0 2.3
YB3-802-4 0.75 2 1390 73.0 0.77 2.4 5.0 2.3
YB3-90S-4 1.1 2.9 1390 75.0 0.77 2.3 6.0 2.3
YB3-90L-4 1.5 3.7 1390 78.0 0.79 2.3 6.0 2.3
YB3-100L1-4 2.2 5.2 1410 80.0 0.81 2.3 6.0 2.4
YB3-100L2-4 3 6.8 1410 82.0 0.82 2.3 6.0 2.4
YB3-112M-4 4 8.8 1440 84.0 0.82 2.3 6.0 2.4
YB3-132S-4 5.5 11.8 1440 86.0 0.84 2.3 7.0 2.4
YB3-132M-4 7.5 15.6 1440 87.0 0.85 2.3 7.0 2.4
YB3-160M-4 11 22.3 1460 88.0 0.85 2.2 7.0 2.4
YB3-160L-4 15 30.1 1460 89.0 0.85 2.2 7.0 2.4
YB3-180M-4 18.5 36.1 1470 90.5 0.85 2.2 7.0 2.3
YB3-180L-4 22 42.7 1470 91.2 0.86 2.2 7.0 2.3
YB3-200L-4 30 57.6 1470 92.0 0.86 2.2 7.2 2.4
YB3-225S-4 37 69.9 1475 92.5 0.87 2.2 7.2 2.4
YB3-225M-4 45 84.7 1475 92.8 0.87 2.2 7.2 2.4
YB3-250M-4 55 103 1480 93.0 0.87 2.2 7.2 2.4
YB3-280S-4 75 140 1480 93.8 0.87 2.2 7.2 2.4
YB3-280M-4 90 167 1480 94.2 0.87 2.2 7.2 2.4
YB3-315S-4 110 201 1480 94.5 0.89 2.1 7.0 2.4
YB3-315M-4 132 240 1480 94.8 0.89 2.1 7.0 2.4
YB3-315L1-4 160 288 1480 95.0 0.90 2.1 7.0 2.4
YB3-315L2-4 200 359 1480 95.2 0.90 2.1 7.0 2.4
YB3-355S1-4 185 330 1490 95.0 0.90 2.1 7.0 2.4
YB3-355S2-4 200 356 1490 95.2 0.90 2.1 7.0 2.3
Synchronous speed1500r/min
YB3-355M1-4 220 443 1490 95.2 0.90 2.1 7.0 2.4
YB3-355M2-4 250 442 1490 95.5 0.90 2.1 7.0 2.4
YB3-355L1-4 280 495 1490 95.5 0.90 2.1 7.0 2.4
YB3-355L2-4 315 556 1490 95.6 0.90 2.1 7.0 2.4
Synchronous speed1000r/min
YB3-711-6 0.18 0.74 850 62.0 0.66 1.9 4.0 2.1
YB3-7126 0.25 0.95 850 63.0 0.68 1.9 4.0 2.1
YB3-801-6 0.37 1.3 850 63.0 0.70 1.9 4.0 2.1
YB3-802-6 0.55 1.8 885 66.0 0.72 1.9 4.0 2.1
YB3-90S-6 0.75 2.3 910 69.0 0.72 2.1 4.0 2.1
YB3-90L-6 1.1 3.2 910 73.0 0.73 2.1 5.0 2.1
YB3-100L-6 1.2 3.9 920 76.0 0.76 2.1 5.0 2.1
YB3-112M-6 2.2 5.6 935 79.0 0.76 2.1 5.0 2.4
YB3-132S-6 3 7.4 960 81.0 0.77 2.1 6.0 2.4
YB3-132M1-6 4 9.8 960 83.0 0.78 2.1 6.0 2.4
YB3-132M2-6 5.5 12.9 965 85.0 0.78 2.1 6.5 2.4
YB3-160M-6 7.5 17.2 970 86.0 0.79 2.1 6.5 2.4
YB3-160L-6 11 24.5 970 87.5 0.79 2.1 6.5 2.3
YB3-180L-6 15 31.6 970

89.0

0.81 2.1 7.0 2.2
YB3-200L1-6 18.5 38.6 980 90.0 0.83 2.2 7.0 2.2
YB3-200L2-6 22 44.7 980 90.0 0.83 2.2 7.0 2.2
YB3-225M-6 30 59.3 980 92.0 0.86 2.1 7.0 2.2
YB3-250M-6 37 71.1 980 92.0 0.86 2.1 7.0 2.2
YB3-280S-6 45 85.9 980 92.5 0.86 2.1 7.0 2.2
YB3-280M-6 55 1.05 980 92.8 0.86 2.1 7.0 2.2
YB3-315S-6 75 142 985 93.5 0.86 2.0 7.0 2.2
YB3-315M-6 90 170 985 93.8 0.86 2.0 7.0 2.2
YB3-315L1-6 110 207 985 94.0 0.86 2.0 7.0 2.2
YB3-315L2-6 132 245 985 94.2 0.87 2.0 7.0 2.2
YB3-355S-6 160 292 990 94.5 0.88 2.0 7.0 2.2
YB3-355M1-6 185 338 990 94.5 0.88 2.0 7.0 2.2
YB3-355M2-6 200 365 990 94.7 0.88 2.0 7.0 2.2
YB3-355L1-6 220 401 990 94.7 0.88 2.0 7.0 2.2
YB3-355L2-6 250 455 990 95.0 0.88 2.0 7.0 2.2
YB3-801-8 0.18 0.88 645 52.0 0.61 1.8 3.3 1.9
YB3-802-8 0.25 1.15 645 55.0 0.61 1.8 3.3 1.9
YB3-90S-8 0.37 1.49 670 63.0 0.62 1.8 4.0 2.0
YB3-90L-8 0.55 2.17 670 64.0 0.63 1.8 4.0 2.0
YB3-100L1-8 0.75 2.4 680 71.0 0.69 1.8 4.0 2.0
YB3-100L2-8 1.1 3.4 680 73.0 0.69 1.8 4.0 2.0
YB3-112M-8 1.5 4.4 690 75.0 0.69 1.8 4.0 2.0
YB3-132S-8 2.2 6.0 705 79.0 0.73 1.8 5.5 2.2
YB3-132M-8 3 7.9 705 81.0 0.73 1.8 5.5 2.2
YB3-160M1-8 4 10.3 720 81.0 0.73 1.9 6.0 2.2
Synchronous speed750r/min
YB3-160M2-8 5.5 13.6 720 83.0 0.75 1.9 6.0 2.2
YB3-160L-8 7.5 17.8 720 85.0 0.76 1.9 6.0 2.2
YB3-180L-8 11 25.1 730 87.0 0.76 1.9 6.0 2.2
YB3-200L-8 15 34.1 730 89.0 0.76 2.0 6.5 2.2
YB3-225S-8 18.5 41.1 730 90.0 0.78 2.0 6.5 2.2
YB3-225M-8 22 47.4 730 90.5 0.78 2.0 6.5 2.2
YB3-250M-8 30 63.4 735 91.0 0.79 1.9 6.5 2.0
YB3-280S-8 37 77.8 735 91.5 0.79 1.8 6.0 2.0
YB3-280M-8 45 94.1 735 92.0 0.79 1.8 6.0 2.0
YB3-315S-8 55 111 735 92.8 0.81 1.9 6.5 2.2
YB3-315M-8 75 151 735 93.0 0.81 1.9 6.5 2.2
YB3-315L1-8 90 178 735 93.8 0.82 1.9 6.5 2.2
YB3-315L2-8 110 217 735 94.0 0.82 1.9 6.5 2.2
YB3-355S-8 132 261 740 94.2 0.82 2.0 6.5 2.2
YB3-355M-8 160 315 740 94.6 0.82 2.0 6.5 2.2
YB3-355L1-8 185 362 740 94.6 0.82 2.0 6.5 2.2
YB3-355L2-8 200 387 740 94.8 0.83 2.0 6.5 2.2
YB3-315S-10 45 99.6 590 92.0 0.75 1.5 6.0 2.1
YB3-315M-10 55 121 590 92.0 0.75 1.5 6.0 2.1
YB3-315L1-10 75 162 590 92.5 0.76 1.5 6.0 2.1
YB3-315L2-10 90 191 590 93.0 0.77 1.5 6.0 2.1
YB3-355S-10 90 230 590 93.0 0.77 1.5

6.0

2.1
YB3-355M1-10 110 275 590 93.2 0.78 1.3 5.5 2.1
YB3-355M2-10 132 333 590 93.5 0.78 1.3 5.5 2.1
YB3-355L1-10 160 385 590 93.6 0.78 1.3 5.5 2.1
YB3-355L2-10 185 385 590 93.6 0.78 1.3 5.5 2.1

4.Installation structure type

Common installation structure type, and the applicable frame size is shown in the table below

Frame number Basic installation structure Derived installation type
B3 B5 B35 V1 V3 V5 V6 B6 B7 B8 V15 V36 B14 B34 V18
63~71
80~112
132~160
180~280
315~355

 

YB3 mining  explosion proof motor Structure Description  
YB3 series ac induction  explosion proof motor mounting details:

Schematic diagram        
Mounting  B3 B35 B5 V1
Mounting Discribtion frame with feet,end-shield without flange frame with feet,end-shield with flange frame without feet,end-shield with flange frame without feet,end-shield with flange
Suitable frame H63-355 H63-355 H63-280 H180-355

YB2 series motors are totally enclosed fan cold(TEFC). 5.bearing type-table 2 table 2

     
Horizontal vertical
motor frame DE side N-DE side DE side N-DE side
63 6201-2RZ/Z2 6201-2RZ/Z2 6201-2RZ/Z2 6201-2RZ/Z2
71 6202-2RZ/Z2 6202-2RZ/Z2 6202-2RZ/Z2 6202-2RZ/Z2
80 6204-2RZ/Z2 6204-2RZ/Z2 6204-2RZ/Z2 6204-2RZ/Z2
90 6205-2RZ/Z2 6205-2RZ/Z2 6205-2RZ/Z2 6205-2RZ/Z2
100 6206-2RZ/Z2 6206-2RZ/Z2 6206-2RZ/Z2 6206-2RZ/Z2
112 6206-2RZ/Z2 6206-2RZ/Z2 6206-2RZ/Z2 6206-2RZ/Z2
132 6208-2RZ/Z2 6208-2RZ/Z2 6208-2RZ/Z2 6208-2RZ/Z2
160 6209-2RZ/Z2 6209-2RZ/Z2 6209-2RZ/Z2 6209-2RZ/Z2
180 6211/Z2 6211/Z2 6211/Z2 6211/Z2
200 6312/Z2 6312/Z2 6312/Z2 6312/Z2
225(2P) 6312/Z2 6312/Z2 6312/Z2 6312/Z2
225(4-8P) 6313/Z2 6212/Z2 6313/Z2 6312/Z2
250(2P) 6313/Z2/Z2 6313/Z1 6313/Z2 6313/Z1
250(4-8P) 6314/Z1 6213/Z1 6314/Z1 6313/Z1
280(2P) 6314/Z1 6313/Z1 6314/Z1 6313/Z1
280(4P) 6317/Z1 6313/Z1 6317/Z1 6313/Z1
315(2P) 6317/Z1 6317/Z1 6317/Z1 6317/Z1
315(4-8P) NU319 6319/Z1 NU319 6319/Z1
355(2P) 6319/Z1 6319/Z1 6319/Z1 6319/Z1
355(4-8P) NU322 6322/Z1 NU322/Z1 6322/Z1

4.PRODUCTION PROCESSING

5.PAINTING COLOR CODE :

6.ADVANTAGE:
Pre-sales service: 

•We are a sales team, with all technical support from engineer team.
•We value every inquiry sent to us, ensure quick competitive offer within 24 hours.
•We cooperate with customer to design and develop the new products. Provide all necessary document.

After-sales service:
•We respect your feed back after receive the motors.
•We provide 1years warranty after receipt of motors..
•We promise all spare parts available in lifetime use.
•We loge your complain within 24 hours.

Application: Industrial
Speed: High Speed
Number of Stator: Three-Phase
Function: Driving
Casing Protection: Explosion-Proof Type
Number of Poles: 2,4,6,8,10p
Customization:
Available

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induction motor

Are there environmental considerations associated with the use of AC motors?

Yes, there are several environmental considerations associated with the use of AC motors. These considerations are primarily related to energy consumption, greenhouse gas emissions, and the disposal of motors at the end of their life cycle. Let’s explore these environmental considerations in detail:

  • Energy Efficiency: AC motors can have varying levels of energy efficiency, which directly impacts their environmental impact. Motors with higher efficiency convert a larger percentage of electrical energy into useful mechanical work, resulting in reduced energy consumption. By selecting and using high-efficiency AC motors, energy usage can be minimized, leading to lower greenhouse gas emissions and reduced reliance on fossil fuels for electricity generation.
  • Greenhouse Gas Emissions: The electricity consumed by AC motors is often produced by power plants that burn fossil fuels, such as coal, natural gas, or oil. The generation of electricity from these fossil fuels releases greenhouse gases, contributing to climate change. By employing energy-efficient motors and optimizing motor systems, businesses and individuals can reduce their electricity demand, leading to lower greenhouse gas emissions and a smaller carbon footprint.
  • Motor Disposal and Recycling: AC motors contain various materials, including metals, plastics, and electrical components. At the end of their life cycle, proper disposal or recycling is important to minimize their environmental impact. Some components, such as copper windings and steel casings, can be recycled, reducing the need for new raw materials and energy-intensive manufacturing processes. It is crucial to follow local regulations and guidelines for the disposal and recycling of motors to prevent environmental pollution and promote resource conservation.
  • Manufacturing and Production: The manufacturing and production processes associated with AC motors can have environmental implications. The extraction and processing of raw materials, such as metals and plastics, can result in habitat destruction, energy consumption, and greenhouse gas emissions. Additionally, the manufacturing processes themselves can generate waste and pollutants. Motor manufacturers can mitigate these environmental impacts by adopting sustainable practices, using recycled materials, reducing waste generation, and implementing energy-efficient production methods.
  • Life Cycle Assessment: Conducting a life cycle assessment (LCA) of AC motors can provide a holistic view of their environmental impact. An LCA considers the environmental aspects associated with the entire life cycle of the motor, including raw material extraction, manufacturing, transportation, use, and end-of-life disposal or recycling. By analyzing the different stages of the motor’s life cycle, stakeholders can identify opportunities for improvement, such as optimizing energy efficiency, reducing emissions, and implementing sustainable practices.

To address these environmental considerations, governments, organizations, and industry standards bodies have developed regulations and guidelines to promote energy efficiency and reduce the environmental impact of AC motors. These include efficiency standards, labeling programs, and incentives for the use of high-efficiency motors. Additionally, initiatives promoting motor system optimization, such as proper motor sizing, maintenance, and control, can further enhance energy efficiency and minimize environmental impact.

In summary, the environmental considerations associated with the use of AC motors include energy efficiency, greenhouse gas emissions, motor disposal and recycling, manufacturing processes, and life cycle assessment. By prioritizing energy efficiency, proper disposal, recycling, and sustainable manufacturing practices, the environmental impact of AC motors can be minimized, contributing to a more sustainable and environmentally conscious approach to motor usage.

induction motor

How do AC motors contribute to the functioning of household appliances?

AC motors play a crucial role in the functioning of numerous household appliances by converting electrical energy into mechanical energy. These motors are used in a wide range of devices, powering various components and performing essential tasks. Let’s explore how AC motors contribute to the functioning of household appliances:

  • Kitchen Appliances: AC motors are found in various kitchen appliances, such as refrigerators, freezers, dishwashers, and blenders. In refrigerators and freezers, AC motors drive the compressor, which circulates the refrigerant and maintains the desired temperature. Dishwashers use AC motors to power the water pumps, spray arms, and the motorized detergent dispenser. Blenders utilize AC motors to rotate the blades and blend ingredients.
  • Laundry Appliances: AC motors are integral to laundry appliances like washing machines and clothes dryers. Washing machines rely on AC motors to power the agitator or the drum, facilitating the washing and spinning cycles. Clothes dryers use AC motors to rotate the drum and operate the blower fan, facilitating the drying process.
  • Vacuum Cleaners: Vacuum cleaners utilize AC motors to generate suction and drive the motorized brush or beater bar. These motors power the fan or impeller, creating the necessary airflow for effective cleaning.
  • Fans and Air Circulation: AC motors are employed in various types of fans, including ceiling fans, table fans, and pedestal fans. These motors drive the fan blades, producing airflow and facilitating air circulation to provide cooling or ventilation in rooms. Additionally, AC motors power exhaust fans used in kitchens, bathrooms, and range hoods to remove odors, smoke, or excess moisture.
  • Air Conditioning and Heating Systems: AC motors are critical components in air conditioning and heating systems. They power the compressor, condenser fan, and blower fan, which are responsible for circulating refrigerant, dissipating heat, and delivering conditioned air throughout the house. AC motors enable the regulation of temperature and humidity levels, ensuring comfort in residential spaces.
  • Garage Door Openers: AC motors are utilized in garage door openers to drive the mechanism responsible for opening and closing the garage door. These motors generate the necessary torque to lift or lower the door smoothly and efficiently.
  • Other Appliances: AC motors are also found in a variety of other household appliances. For instance, they power pumps in water heaters, swimming pool filters, and sump pumps. AC motors are used in dehumidifiers, humidifiers, and air purifiers to drive the fans and other internal components. They are also present in audiovisual equipment, such as DVD players, record players, and fans used for cooling electronics.

In summary, AC motors are essential components in household appliances, enabling their proper functioning and delivering the mechanical energy required for various tasks. From kitchen appliances to laundry machines, fans, air conditioning systems, and more, AC motors provide the necessary power and functionality to enhance our daily lives.

induction motor

What are the main components of an AC motor, and how do they contribute to its operation?

An AC motor consists of several key components that work together to facilitate its operation. These components include:

  1. Stator: The stator is the stationary part of an AC motor. It is typically made of a laminated core that provides a path for the magnetic flux. The stator contains stator windings, which are coils of wire wound around the stator core. The stator windings are connected to an AC power source and produce a rotating magnetic field when energized. The rotating magnetic field is a crucial element in generating the torque required for the motor’s operation.
  2. Rotor: The rotor is the rotating part of an AC motor. It is located inside the stator and is connected to a shaft. The rotor can have different designs depending on the type of AC motor. In an induction motor, the rotor does not have electrical connections. Instead, it contains conductive bars or coils that are short-circuited. The rotating magnetic field of the stator induces currents in the short-circuited rotor conductors, creating a magnetic field that interacts with the stator field and generates torque, causing the rotor to rotate. In a synchronous motor, the rotor contains electromagnets that are magnetized by direct current, allowing the rotor to lock onto the rotating magnetic field of the stator and rotate at the same speed.
  3. Bearing: Bearings are used to support and facilitate the smooth rotation of the rotor shaft. They reduce friction and allow the rotor to rotate freely within the motor. Bearings are typically located at both ends of the motor shaft and are designed to withstand the axial and radial forces generated during operation.
  4. End Bells: The end bells, also known as end covers or end brackets, enclose the motor’s stator and rotor assembly. They provide mechanical support and protection for the internal components of the motor. End bells are typically made of metal and are designed to provide a housing for the bearings and secure the motor to its mounting structure.
  5. Fan or Cooling System: AC motors often generate heat during operation. To prevent overheating and ensure proper functioning, AC motors are equipped with fans or cooling systems. These help dissipate heat by circulating air or directing airflow over the motor’s components, including the stator and rotor windings. Effective cooling is crucial for maintaining the motor’s efficiency and extending its lifespan.
  6. Terminal Box or Connection Box: The terminal box is a housing located on the outside of the motor that provides access to the motor’s electrical connections. It contains terminals or connection points where external wires can be connected to supply power to the motor. The terminal box ensures a safe and secure connection of the motor to the electrical system.
  7. Additional Components: Depending on the specific design and application, AC motors may include additional components such as capacitors, centrifugal switches, brushes (in certain types of AC motors), and other control devices. These components are used for various purposes, such as improving motor performance, providing starting assistance, or enabling specific control features.

Each of these components plays a crucial role in the operation of an AC motor. The stator and rotor are the primary components responsible for generating the rotating magnetic field and converting electrical energy into mechanical motion. The bearings ensure smooth rotation of the rotor shaft, while the end bells provide structural support and protection. The fan or cooling system helps maintain optimal operating temperatures, and the terminal box allows for proper electrical connections. Additional components are incorporated as necessary to enhance motor performance and enable specific functionalities.

China Custom YB3 AC Asynchronous Three Phase Electric Motor with Explosion-Proof Certificate   vacuum pump and compressor	China Custom YB3 AC Asynchronous Three Phase Electric Motor with Explosion-Proof Certificate   vacuum pump and compressor
editor by CX 2023-11-16