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ABB PDD205A0121 3BHE025335R0121/3BHE025336P201REVD 厦门雄霸电子

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ABB PDD205A0121 3BHE025335R0121/3BHE025336P201REVD 厦门雄霸电子

型号: ABB PDD205A0121 3BHE025335R0121/3BHE025336P201REVD

分类: ABB系统备件

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详细介绍

简单的说,电机转矩是指其转动力量的大小,是电机拖动负载能力的具体表现。在电机产品的性能参数中,以额定转矩、转矩和转矩表征其不同状态下的性能指标。

 

转矩是电机起动性能的特性,额定转矩是电机额定运行条件下对应的力能指标,而转矩则反映电机的过载能力;不同的产品特性和使用工况对转矩的要求不同。

 

对照同中心高、同功率但不同极数的电机可以发现,多极低转速电机的转矩较大,在电机的短路试验中可以发现,较小规格的少极电机,制动相对容易,而多极的低转速电机制动就比较困难。从电机的外观特征比较,除特别小或特别大的规格电机外,同样中心高同功率的电机,低速电机的轴伸直径比较大,因为其运行中承载的负载要比较大,这也是针对于电机转矩特性的尺寸保证要求。

 

从电机转矩的计算公式(T=9550 P / n )可以看出,当电机功率相同时,低速电机对应的转矩较大。

 

电机轴伸是传动的关键零部件,除电机与设备的对接尺寸控制外,电机轴伸的直径大小、轴的材质,以及具体的加工控制要求,都直接影响着电机的转矩能力体现,是一种机械能力表现。

 

当电机的转矩超过其可以承当的范围时,即电机发生过载,电机的电流会因为过载出现大幅增加,导致绕组发生过热烧毁问题;即使电机绕组能满足过载要求,就电机的轴而言,过载意味阻力矩大,作用在轴上力矩太大时,会对轴伸造成直接的伤害,特别是对于轴伸加工不太规范的情况,容易发生电机轴伸挠曲或断裂的质量事故。



ABB PDD205A0121 3BHE025335R0121/3BHE025336P201REVD 厦门雄霸电子

Any electrical product, including motor products, has specified the rated voltage for its normal operation, and any voltage deviation will cause adverse consequences to the normal operation of the electrical appliance.
For relatively high-end equipment, necessary protective devices are used. When the power supply voltage is abnormal, the power supply is cut off for protection. For very precise instruments, constant voltage power supply is used for adjustment. However, for motor products, especially industrial motor products, the possibility of using constant voltage devices is very small, and there are more situations of power outage protection.
For single-phase motors, there are only two types of voltage: high and low, while for three-phase motors, there is also a voltage balance problem. The direct impact of these three voltage deviations is an increase in current or an imbalance in current.
According to the technical specifications of the motor, the deviation between the rated voltage of the motor cannot exceed 10%, and the torque of the motor is proportional to the square of the motor terminal voltage. When the voltage is too high, the motor core will be in a magnetic saturation state, and an increase in stator current will cause serious heating of the winding, even leading to quality problems such as winding burnout; For situations where the voltage is low, one possibility is that there may be problems with the starting of the motor, especially for motors operating under load. In order to meet the load operation of the motor, the current must also increase. The consequence of the current increase is also the heating or even burning of the winding, especially for long-term low-voltage operation, which is even more serious.

The voltage imbalance of three-phase motors is a typical power supply problem. When the voltage is unbalanced, it will inevitably lead to the imbalance of motor current. The negative sequence component of unbalanced voltage generates a magnetic field in the motor air gap that is opposite to the rotation of the rotor. The small negative sequence component in the voltage may cause the current flowing through the winding to be much larger than the current at voltage balance. The frequency of the current flowing through the rotor conductor is almost twice the rated frequency, so the current squeezing effect in the rotor conductor causes the increase in losses of the rotor winding to be much greater than that of the stator winding. The temperature rise of the stator winding is higher than that when operating under balanced voltage.
When the voltage is unbalanced, the locked rotor torque, small torque, and large torque of the motor will all decrease. If the voltage imbalance is severe, the motor will not function properly.
When the motor operates at full load under unbalanced voltage, the speed will slightly decrease due to the increase in slip rate as the additional loss of the rotor increases. As the degree of voltage (current) imbalance increases, the noise and vibration of the motor may increase. Vibration may damage the electric motor or the entire drive system.
To effectively identify the cause of uneven motor voltage, methods such as power supply voltage detection or current changes may be used. Most devices are equipped with voltage monitoring instruments, which can be analyzed through data comparison. However, for situations without monitoring devices, regular testing or current measurement should be used; For motors that can rotate in both directions, without affecting the dragged equipment, the two-phase power supply lines can be freely swapped to observe the current changes, and indirectly analyze the voltage balance. After eliminating the problem of uneven voltage, quality issues such as turn to turn and phase to phase may be involved.

 

ABB PDD205A0121 3BHE025335R0121/3BHE025336P201REVD 厦门雄霸电子


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