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THE INFLUENCE OF MAGNETIC RETAINING RINGS ON AC MOTORS FOR BOOSTING TORQUE AND REDUCING STARTING CURRENT

机译:磁保留环对AC电动机的影响,用于提高扭矩和减少启动电流

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There are applications where low current inrush and or high starting torque are specified for reducing disturbance on the electrical distribution network. There are also situations where it is required to successfully start large AC motors at reduced voltage conditions when only one substation transformer of a double-ended transformer is in service at petrochemical plants. The latter condition requires the motors to draw lower inrush current while producing high starting torque. These requirements can create unfavorable design characteristics where one or both requirements can not be accomplished using standard techniques at final design stage or at final motor test. The authors have accomplished designing and installing magnetic material retaining rings on Induction motors with significant improvement in inrush currents and starting torques. Inrush currents have been reduced from 600% to 508% and starting torques increased up to 14%. Several case studies of using magnetic retaining rings on large induction motors are described in this paper for machines ranging from 6,000 up to 14,000HP and testing as low as 380% inrush for machines with magnetic rings. The application of this concept is not limited to only AC induction motors. The same process can also be applied to synchronous motors. Very limited information is available on the benefits of applying magnetic retaining rings and what the consequences are for large AC motors. The application of magnetic retaining rings is a practical approach to solving inrush and torque problems at the manufacturing or design stage. The theory, test, concepts and consequences along with electrical and mechanical considerations are described in this paper.
机译:有应用于低电流浪涌和或高启动扭矩以减少电气分配网络的干扰。当仅在石油化工厂使用一台变电器变压器时,还需要在降低电压条件下成功启动大型交流电机的情况。后一种条件需要电机在产生高启动扭矩的同时绘制较低的浪涌电流。这些要求可以创造不利的设计特性,其中一个或两个要求无法在最终设计阶段或最终电机测试处使用标准技术来完成。作者已经完成了在感应电动机上的设计和安装磁性材料保持环,具有浪涌电流的显着改善和启动扭矩。浪涌电流从600%降至508%,开始扭矩增加到14%。使用大型感应电动机磁保持环的几个案例研究在本文的机器范围从6000到14,000HP和测试低至380%浪涌用于与磁环机描述。该概念的应用不仅限于交流感应电动机。相同的过程也可以应用于同步电动机。非常有限的信息可用于应用磁保留环的好处以及大型交流电动机的后果。磁性保持环的应用是解决制造或设计阶段的浪涌和扭矩问题的实用方法。本文描述了理论,测试,概念以及电气和机械考虑的后果。

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