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Estimation of current path area during small scale resistance spot welding of bulk metallic glass to stainless steel

机译:大块金属玻璃与不锈钢的小规模电阻点焊过程中的电流路径面积估算

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摘要

The current path area is a significant factor in estimating the temperature distribution via numerical modelling for resistance spot welding. This paper presents a method for the estimation of the current path area at the faying surface during small scale resistance spot welding between bulk metallic glass and stainless steel. Observation of cross-sections and fracture surfaces reveals the welding process at the faying surface for both dissimilar and similar welding. The equipotential surface that depends on the difference between the contact area of the electrode-to-sheet and sheet-to-sheet interfaces is estimated by numerical modelling. The current path area at the faying surface is estimated by measuring the electric potential between the sheets, taking into account the current distribution.
机译:通过电阻点焊的数值模型,电流路径面积是估算温度分布的重要因素。本文提出了一种在块状金属玻璃与不锈钢之间进行小规模电阻点焊时,在搭接面上的电流路径面积的估算方法。观察横截面和断裂面,可以发现异种和相似焊接的接合面都处于焊接过程。通过数值建模来估计等电位面,该等电位面取决于电极与薄片和薄片与薄片之间的接触面积之间的差异。考虑到电流分布,可以通过测量薄片之间的电势来估算接合面上的电流路径面积。

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