Testing to assure reliable operation of electric motors

D. E. Schump
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引用次数: 2

Abstract

Several field test procedures that can be used as part of a motor maintenance program are discussed, and failure mechanisms in motor insulation systems are considered. It is suggested that motor windings fail due to a few simple mechanisms. The magnetic forces which turn the rotor also cause motion in the windings. The motion causes wear between the wires, abrading the insulations. The thin turn-to-turn insulation is least able to sustain this wear; thus turn-to-turn shorting often occurs before the thicker ground wall insulation is affected. If turn-to-turn shorting is a major factor in causing motor winding failure, it stands to reason that a test for impaired turn insulation is a good periodic test for motors. The surge test has been used for a generation as a quality control tool in motor manufacturing plants. Development of portable field test instruments has allowed the test to be adopted as a tool which can be incorporated in plant maintenance programs. Experimental and practical test data have shown this conclusion to be accurate.<>
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测试以确保电机的可靠运行
几个现场测试程序,可以用作电机维护程序的一部分进行了讨论,并在电机绝缘系统的失效机制进行了考虑。有人认为,电机绕组失效是由于一些简单的机制。转动转子的磁力也会引起绕组的运动。这种运动使导线之间产生磨损,磨损绝缘层。薄的匝间绝缘最不能承受这种磨损;因此匝间短路往往发生在较厚的地壁绝缘受到影响之前。如果匝间短路是导致电机绕组故障的主要因素,那么对电机进行匝间绝缘受损测试是一个很好的定期测试。浪涌试验作为一种质量控制工具在电机制造厂已经使用了一代。便携式现场测试仪器的发展使该测试成为一种工具,可以纳入工厂维护计划。实验和实际测试数据表明,该结论是准确的
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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