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An Experimental Investigation of Dynamic Welding Mechanism of Contacts Used in Low Current Switching Devices

机译:小电流开关装置触头动态焊接机理的实验研究

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Dynamic welding failure mechanisms of silver metal oxide composite contact are hot topics in the area of low current switching devices and electrical contact materials. What is the root reason for contact dynamic welding in electrical endurance tests? Is it the degradation of the physical properties of the material or the variations of mechanical operation characteristics or the changes in contact surface morphology? In this paper, a series of electrical endurance tests (including resistive load and capacitive load) are conducted by using our designed model switch. The typical waveforms of dynamic force during contact break are recorded, and then the extraction method for occurred welding force value is presented. Further, the variations in contact gap, arc energy, bounce arc energy, and static contact force as a function of operation cycles are analyzed explicitly. Particularly, the distribution of welding force are counted and explained with the change of collected parameters. Finally, the possible dynamic welding failure mechanisms of contact materials is proposed.
机译:银金属氧化物复合触点的动态焊接失效机理是低电流开关器件和电触点材料领域的热门话题。电气耐力测试中接触动态焊接的根本原因是什么?是材料的物理性能下降,机械操作特性的变化还是接触表面形态的变化?在本文中,使用我们设计的模型开关进行了一系列耐电性测试(包括电阻负载和电容负载)。记录接触断开过程中典型的动态力波形,然后给出出现的焊接力值的提取方法。此外,明确分析了接触间隙,电弧能量,反弹电弧能量和静态接触力随操作周期的变化。特别是,通过收集参数的变化来计算和解释焊接力的分布。最后,提出了接触材料可能的动态焊接失效机理。

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