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Resistance Spot Welding of Aluminum Alloy to Steel with Transition Material — From Process to Performance — Part Ⅰ: Experimental Study

机译:过渡材料对铝合金与钢的电阻点焊—从工艺到性能—第一部分:实验研究

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摘要

This paper summarizes our work to date on resistance spot welding of aluminum alloy to steel, from process development to performance evaluation. Since aluminum alloys and steel cannot be readily fusion welded together due to their drastically different thermal physical properties, a cold-rolled clad material was introduced as a transition to aid the resistance welding process. The optimal welding parameters and electrode selections were established using experimental approaches. The welded samples' mechanical behaviors were then evaluated using static and dynamic weld strength tests as well as cyclic fatigue tests. The weld strength, failure mode, and fatigue life were then compared with self-piercing rivets of the same dissimilar metals combination. Statistical analyses were also performed to analyze the effects of different failure modes on samples' peak strength and energy absorption.
机译:本文总结了迄今为止我们从铝合金到钢的电阻点焊的工作,从工艺开发到性能评估。由于铝合金和钢由于热物理性质的不同而不能轻易地熔焊在一起,因此引入了冷轧复合材料作为过渡,以辅助电阻焊接工艺。使用实验方法确定了最佳的焊接参数和电极选择。然后,使用静态和动态焊接强度测试以及循环疲劳测试来评估焊接样品的机械性能。然后将焊接强度,破坏模式和疲劳寿命与相同异种金属组合的自穿孔铆钉进行比较。还进行了统计分析,以分析不同破坏模式对样品峰值强度和能量吸收的影响。

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