Numerical Modelling of Thermo-Mechanical Effects Developed in Resistance Spot Welding of E304 Steel with Copper Interlayer

Q4 Engineering
D. Bîrsan, G. Simion
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引用次数: 0

Abstract

Resistance spot welding is a technique applied to join two or more similar or dissimilar metals, by applying pressure and electric current to the spot-weld area. Based on the electrical resistance property of metals, a great amount of heat is generated and used to carry out materials joints, by creating a molten metal nucleus between the components to be welded. The influence of an interlayer material, positioned between the parent materials, on the strength of similar or dissimilar welded joints was studied by researchers worldwide. In most cases, by optimising the process parameters, an increase in the welded joint strength was achieved. In this paper, the resistance spot welding of 1mm thick E304 stainless steel sheets, both with and without a copper foil interlayer, was investigated, by applying, in all cases, the same process parameters. The tensile test of the joints showed a decrease in the strength of joints performed with interlayer metal. A method to control the deterioration level of the joint’ mechanical properties is the Finite Element Analysis which allows to optimise the process parameters so that the negative effects of the process on the joint quality to be limited. It was found that an increase in amperage is needed to compensate for the addition of the interlayer metal and to obtain an adequate melting in the spot-weld area. This modification causes an increase of the molten core diameter that will lead to improvement of the welded joint strength, while no significant influence on the internal stress level was noticed in the processing and numerical analysis of the output data.
铜夹层E304钢电阻点焊热力学效应的数值模拟
电阻点焊是一种通过在点焊区域施加压力和电流来连接两种或多种相似或不同金属的技术。基于金属的电阻特性,通过在待焊接的部件之间产生熔融金属核,产生大量的热量并用于进行材料连接。国内外研究人员研究了位于母材之间的夹层材料对相似或不同焊接接头强度的影响。在大多数情况下,通过优化工艺参数,可以提高焊接接头的强度。在所有情况下,采用相同的工艺参数,研究了1mm厚E304不锈钢片在有和没有铜箔中间层的情况下的电阻点焊。接头的拉伸试验表明,层间金属接头的强度降低。控制接头机械性能恶化程度的一种方法是有限元分析,它允许优化工艺参数,从而限制工艺对接头质量的负面影响。结果发现,需要增加电流来补偿层间金属的添加,并在点焊区域获得足够的熔化。在对输出数据的处理和数值分析中,没有发现对内应力水平有明显的影响,但这一修改使熔芯直径增大,从而提高了焊接接头的强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
1
审稿时长
16 weeks
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