首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >METHODS TO OBTAIN WELD DISCONTINUITIES IN SPOT-WELDED JOINTS MADE OF ADVANCED HIGH-STRENGTH STEELS
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METHODS TO OBTAIN WELD DISCONTINUITIES IN SPOT-WELDED JOINTS MADE OF ADVANCED HIGH-STRENGTH STEELS

机译:先进高强度钢点焊接头中获得焊缝不连续性的方法

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摘要

Resistance spot welding is the major joining technique in mass car production. This applies in particular to high-strength steel and advanced high-strength steel (AHSS) joining of thin sheet steel components for light-weight body shell structures. Joining of AHSS in mass production might lead to weld discontinuities under certain circumstances. Those discontinuities in form of cracks might be an initial start of cracking in the spot-welded joints regarding fatigue loads. It is of great interest to figure out, if, in comparison to specimens without weld discontinuities, the crack initiating point changes and if the fatigue resistance might be reduced by the discontinuities. In this contribution, an overview of potential discontinuities is given. Their possible causes are discussed and means for their detection are highlighted. Among the possible causes of weld discontinuities, two major groups are distinguished: the welding parameters as primary influences in the welding process, and the production-specific influences as secondary ones. With emphasis on major cracks penetrating the weld nugget, these influences are analysed. Finally, a combination of extreme welding parameters with production-specific influences is chosen in order to establish a method which enables the preparation of fatigue test specimens with reproducible major cracks in different locations of the spot-welded joints. This method is then applied in order to prepare spot weld specimens for fatigue tests.
机译:电阻点焊是大规模汽车生产中的主要连接技术。这尤其适用于轻型车身壳体结构的薄钢板部件的高强度钢和高级高强度钢(AHSS)的连接。在某些情况下,将AHSS投入批量生产可能会导致焊缝间断。这些裂纹形式的不连续性可能是关于疲劳载荷的点焊接头开裂的最初开始。值得一提的是,与没有焊缝不连续的试样相比,裂纹的起始点是否发生了变化,疲劳强度是否会因焊缝的不连续而降低。在此贡献中,给出了潜在不连续性的概述。讨论了它们的可能原因,并重点介绍了检测它们的方法。在可能导致焊接不连续的原因中,将主要分为两类:焊接参数是焊接过程中的主要影响因素,特定于生产的影响因素是次要影响因素。着重于穿透焊接熔核的主要裂纹,分析了这些影响。最后,选择极端焊接参数与特定生产影响相结合,以建立一种方法,该方法能够制备在点焊接头不同位置具有可再现的大裂纹的疲劳试样。然后应用此方法以准备用于疲劳测试的点焊样品。

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