YSPKK Series High-Voltage Three-Phase Asynchronous Motors

Y, YKK Series High-Voltage Three-Phase Asynchronous Motors
Covering frame sizes ranging from 355 mm to 1120 mm, the Y and YKK series high-voltage three-phase asynchronous motors are self-developed premium products of our company. We integrate state-of-the-art domestic and international technologies and deploy modern field analysis technology to carry out accurate electromagnetic computation. Every component undergoes optimized design with meticulous calibration of power loss, wind resistance and structural strength.
With more than 70 years of expertise in producing medium and large high-voltage AC motors, paired with a mature, stable design and production system, we manufacture this series using premium raw materials and standardized processing techniques. The motors deliver prominent strengths including high efficiency, low noise, low vibration, outstanding operational dependability, plus simple installation and convenient maintenance.
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The YKK Series three-phase asynchronous motors (frame size 355–1120 mm) are high-voltage units developed by integrating advanced domestic and international technologies. Adopting modern field analysis techniques for precise electromagnetic computation, each component is optimized for minimized losses, lower wind resistance and enhanced structural strength. Backed by over 70 years of experience in manufacturing medium and large high-voltage AC motors, the series is produced with high-grade materials and sophisticated processing technologies. These motors feature high efficiency, low noise, low vibration, superior reliability, and easy installation and maintenance, fully adaptable to demanding industrial working conditions.

This series is widely used for driving general mechanical equipment including fans, pumps, compressors, crushers, scrap shredders and belt conveyors. It serves industries such as petroleum, chemical, coal, power plants, metallurgy, transportation, textile, pharmaceutical and grain processing.


Advantages and Characteristics

By introducing and absorbing advanced domestic and overseas technologies, we adopt a field-circuit coupled method for electromagnetic design. This improves electromagnetic calculation accuracy and provides accurate maximum torque multiples, effectively ensuring excellent motor overload capability.

Finite Element Method (FEM) mechanical analysis is applied throughout structural design and verified by practical operation. Precise boundary conditions are applied to mechanical models to optimize material utilization and control motor vibration and noise. Applicable to various cooling modes, FEM analysis delivers high-precision and intuitive air distribution simulation, improving the accuracy of temperature rise calculation, reducing ventilation loss and further enhancing overall motor efficiency.

Electromagnetic analysis diagram using the "field and circuit" combination method

Output curve of electromagnetic calculation

Finite element mechanical analysis method for machine base

Shaft system analysis

Modeling and analysis of external air path by finite element analysis method

2. This series of motor adopts box structure, the base is made of steel plate welded into box shape, light weight and good rigidity, the top of the motor is installed with protective top cover or cooler, which is convenient for motor heat dissipation, installation and maintenance.

3. The stator adopts external press-fit structure, and the stator and rotor punching sheets are made of low-loss non-oriented cold-rolled silicon steel sheets. The stator winding is made of class F insulation material, which has strong insulation voltage resistance and anti-corona ability, and the winding ends are reliably fixed and tied, and treated with vacuum pressure impregnation solvent-free paint (VPI), so the motor has excellent and reliable insulation performance, high mechanical strength, strong moisture resistance and long service life.

4. The bearings are in the form of rolling bearings and sliding bearings, depending on the power and speed of the motor, and the protection level is IP00, IP23, IP44, IP54 or IP55. The rolling bearing is equipped with a non-stop oil filling and draining device, making it easy for users to use and maintain.

5. The main junction box is placed on the right side of the motor (from the DE), or on the left side according to the user's requirements, and there are separate grounding terminals inside and outside the junction box.

6. According to the user's requirement, temperature measuring devices can be added to the important parts such as stator winding and bearing to facilitate on-site observation and remote monitoring to ensure safe and reliable operation of the motor.

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High-Voltage Asynchronous Motors The YKK series high-voltage three-phase asynchronous motors cover frame sizes from 355 mm to 1120 mm. Independently developed by our company, this product range integrates advanced domestic and overseas technologies. We adopt state-of-the-art field analysis technology for electromagnetic computation, with precise calculation and optimized design for power losses, wind resistance and structural strength of every component. Supported by our mature, stable design and production system and more than 70 years of experience manufacturing medium and large high-voltage AC motors, the motors are fabricated with premium raw materials and standardized processing techniques. They feature high efficiency, low noise, low vibration, excellent operational reliability, as well as convenient installation and maintenance. This series primarily drives general industrial machinery including fans, pumps, compressors, crushers, chip removing machines and conveying equipment. It serves petroleum, chemical, coal, power plant, metallurgical, transportation, textile, pharmaceutical and grain processing sectors. II. Advantages & Characteristics By digesting advanced domestic and international technologies, we adopt field-circuit coupled electromagnetic design for the YKK series. This greatly boosts electromagnetic calculation accuracy and delivers precise maximum torque multiple values, fully securing the motors’ reliable overload capacity. Finite Element Method (FEM) mechanical analysis is applied throughout structural design and repeatedly validated through field operation data. Accurate boundary conditions are set for mechanical models to optimize material utilization and suppress motor vibration and noise. FEM analysis fits all cooling configurations and realizes high-precision, visualized air flow distribution simulation. It elevates the accuracy of temperature rise prediction during design, cuts ventilation losses and further lifts overall motor efficiency.

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