A new life-test equipment designed for medium-duty electromagnetic contactors

S. Biyik, Murat Aydin
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引用次数: 4

Abstract

In this study, a new test equipment, which is capable of performing arc-erosion experiments of electrical contacts on a medium-duty contactor, was designed and manufactured. The current load value of the system was gradually adjustable up to 30 A via control buttons located on the device. The make/break counts (cycle) and delay times of electrical contacts were adjusted by an electronic flasher. The number of operations was readily adjusted to desired counts before tests, and was monitored along the whole test on the LCD display of up/down counter. Inductive loads consisting transformers were used to achieve real-life operating conditions. A contactor having pole number of 3, switching power of 37 kW, and switching current of 75 A was used to conduct arc-erosion experiments. The test conditions for this contactor were 220 V operating voltage, 50 Hz frequency, and 20 A switching current. The switching frequency and delay time were selected as 1,000 times per hour and 2.6 s, respectively. Arc-erosion experiments were carried out by using the contactor up to 40,000 operations. The contact surfaces were analyzed by using scanning electron microscopy. The chemical compositions nearby arc were determined by energy dispersive x-ray spectroscopy. The experimental results showed that the contact surfaces were reasonably affected by the arc-erosion, which leads to mass loss by material migration and/or evaporation. Arc-affected zones were enlarged with the increasing operation number. It was concluded that the stationary contacts underwent major erosion.
一种新型中型电磁接触器寿命试验装置
本研究设计并制造了一种能够进行中等负荷接触器电触点电弧侵蚀实验的新型测试设备。通过位于设备上的控制按钮,系统的电流负载值逐渐可调至30a。电触点的通/断计数(周期)和延时时间由电子闪光器调节。在测试前,操作的数量很容易调整到所需的计数,并在整个测试过程中通过LCD上的上升/下降计数器进行监控。电感负载组成的变压器,以实现实际操作条件。采用极数为3、开关功率为37 kW、开关电流为75 A的接触器进行电弧侵蚀实验。该接触器的测试条件为工作电压220v,频率50hz,开关电流20a。开关频率为1000次/ h,延时时间为2.6 s。利用该接触器进行了多达40000次的电弧侵蚀实验。用扫描电镜对接触面进行了分析。用能量色散x射线光谱法测定了电弧附近的化学成分。实验结果表明,接触表面受到电弧侵蚀的影响,导致材料迁移和/或蒸发造成质量损失。随着作业次数的增加,受弧线影响的区域逐渐扩大。得出的结论是,固定触点遭受了严重的侵蚀。
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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