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CONTROL OF INTERMETALLIC COMPOUND GROWTH IN ALUMINUM TO STEEL RESISTANCE WELDING

机译:铝对钢电阻焊接的金属间化合物生长的控制

摘要

A method of resistance spot welding a workpiece stack-up that includes an aluminum workpiece and an overlapping adjacent steel workpiece so as to minimize the thickness of an intermetallic layer comprising Fe—Al intermetallic compounds involves providing reaction-slowing elements at the faying interface of the aluminum and steel workpieces. The reaction-slowing elements may include at least one of carbon, copper, silicon, nickel, manganese, cobalt, or chromium. Various ways are available for making the one or more reaction-slowing elements available at the faying interface of the aluminum and steel workpieces including being dissolved in a high strength steel or being present in an interlayer that may take on a variety of forms including a rigid shim, a flexible foil, a deposited layer adhered to and metallurgically bonded with a faying surface of the steel workpiece, or an interadjacent organic material layer that includes particles containing the reaction-slowing elements.
机译:一种电阻点焊工件叠层的方法,该工件叠层包括铝工件和重叠的相邻钢工件,以最大程度地减少包含Fe-Al金属间化合物的金属间层的厚度,该方法包括在反应堆的接合界面处设置反应减慢元素。铝和钢工件。减慢反应的元素可以包括碳,铜,硅,镍,锰,钴或铬中的至少一种。有多种方法可用于使一个或多个减慢反应的元素在铝和钢工件的接合界面处使用,包括溶解在高强度钢中或存在于中间层中,中间层可以采取包括刚性在内的多种形式垫片,挠性箔,附着在钢制工件的搭接表面上并与之冶金结合的沉积层,或者是相邻层的有机材料层,其包含含有减慢反应元素的颗粒。

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