螺栓式母线触头性能的多变量参数研究

James Gatherer, R. Jackson
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引用次数: 5

摘要

对于大功率设备来说,螺栓连接的可靠性是一个值得关注的问题,因为在多次驱动循环中产生的热量和热膨胀可能会使连接松动。目前,关于什么材料组合、表面光洁度等将是有益的信息似乎相对较少。这项工作通过实验评估了超过100次循环的螺栓接触的可靠性,并建立了理论模型来预测螺栓的相对接触性能。实验测试布置包括串联连接的8对母线,同时电源循环电流,使母线达到所需的温升。测试了各种情况,包括母线材料和厚度、垫圈、扭矩、螺栓性能等级、直径和封头类型,共有60种不同的组合。每个组合测试三次,然后使用统计方法对案例进行比较。正如预期的那样,电循环和热循环使螺栓疲劳,并且在某些情况下超过了连接的极限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A multi-variable parametric study on the performance of bolted busbar contacts
The reliability of bolted joints is a concern for high-powered devices as the generated heat and thermal expansion could loosen the connections over many actuation cycles. There currently appears to be relatively little information on what material combinations, surface finish, etc. would be beneficial. This work experimentally evaluates the reliability of bolted contacts over 100 cycles and develops theoretical models to predict the relative bolted contact performance. The experimental test arrangement includes eight busbar pairs connected in series, while a power supply cycles current so that the busbars reach a desired temperature rise. A variety of cases are tested that vary the busbar material and thickness, washers, torque, bolt property class, diameter, and head types, in 60 different combinations. Each combination is tested three times, and then the cases are compared to each other using statistical methods. As expected, the electrical and thermal cycling fatigues the bolts, and in some cases the limitations of the joint were exceeded.
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