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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Preventing nugget shifting in joining of dissimilar steels via resistance element welding: a numerical simulation
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Preventing nugget shifting in joining of dissimilar steels via resistance element welding: a numerical simulation

机译:通过电阻元件焊接防止异种钢连接中的晶核移位:数值模拟

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摘要

Abstract Joining the advanced high-strength steels and conventional steels is a critical issue for the manufacturing of lightweight vehicles. Resistance element welding (REW) is an emerging joining method for dissimilar metals and alloys by applying an auxiliary rivet-like resistance element in resistance spot welding (RSW). In this study, an electrical-thermal-mechanical coupled REW model for high-strength dual-phase (DP) steel and Q235 steel was developed by considering contact resistances as functions of temperature and surface contacting area. The results show that the welding element in REW serves to concentrate the current flow and thus Joule heat generation at the faying interface between the element and workpiece. For welding DP600 and Q235 workpieces with a small thickness ratio (≤0.4) or a high electrical resistivity ratio (≥3), REW could effectively mitigate nugget shifting between workpieces and reducing the thermal excursion to the electrode compared to RSW. Adding well-designed insulation layers in REW could further concentrate the current within the welding element, and enables a large-sized nugget at a lower current. This study is significant because it provides a better understanding of the nugget development under the electrical-thermal-mechanical interaction at interfacial contacts in REW and contributes to its further advance.
机译:摘要 先进高强钢与常规钢的结合是汽车轻量化制造的关键问题。电阻元件焊接 (REW) 是一种新兴的异种金属和合金连接方法,通过在电阻点焊 (RSW) 中应用辅助铆钉状电阻元件。本研究将接触电阻视为温度和表面接触面积的函数,建立了高强度双相钢和Q235钢的电-热-机械耦合REW模型。结果表明:REW中的焊接元件用于集中电流,从而在元件与工件之间的界面处产生焦耳热。对于厚度比小(≤0.4)或电阻率高(≥3)的DP600和Q235工件的焊接,与RSW相比,REW可以有效减轻工件之间的晶核偏移,并减少对电极的热偏移。在REW中添加精心设计的绝缘层可以进一步将电流集中在焊接元件内,并以较低的电流实现大尺寸的熔核。本研究有助于更好地理解电工工程界面接触下晶块的发育,并有助于其进一步发展。

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