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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Microstructure and failure behaviour of resistance spot welded DP980 dual phase steel
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Microstructure and failure behaviour of resistance spot welded DP980 dual phase steel

机译:电阻点焊DP980双相钢的组织和失效行为

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摘要

In this research, microstructure and overload failure behaviour of resistance spot welded DP980 were investigated. Microstructural characterisation, microhardness test and static tensile shear test were conducted. Fusion zone size proved to be the most important controlling factor of spot weld peak load and energy absorption. The results of this study demonstrated that the conventional weld size recommendation of d=4t~(1/2) is not sufficient to ensure the pullout failure mode for DP980 steel resistance spot welds during the tensile shear test. In pullout mode, generally, failure was initiated at heat affected zone/base metal interface, where softening occurs due to the tempering of martensite. However, when heavy expulsion occurs, pullout failure tends to be initiated at fusion zone/heat affected zone interface. It was shown that heavy expulsion and associated large electrode indentation can reduce load carrying capacity and energy absorption capability of DP980 spot welds.
机译:本研究研究了电阻点焊DP980的组织和过载失效行为。进行了显微组织表征,显微硬度测试和静态拉伸剪切测试。熔合区的尺寸被证明是点焊峰值载荷和能量吸收的最重要控制因素。研究结果表明,传统的推荐焊接尺寸d = 4t〜(1/2)不足以确保拉伸剪切试验中DP980钢电阻点焊的拔出失效模式。通常,在拉出模式下,失效是在受热影响的区域/贱金属界面处开始的,在此区域由于马氏体的回火而发生软化。但是,当发生大量排出时,往往会在熔合区/受热影响区的界面处引发拉拔故障。结果表明,大量排出和相关的较大的电极压痕会降低DP980点焊的承载能力和能量吸收能力。

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