首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >The mechanical properties of dissimilar resistance spot-welded DP600-DP1000 steel joints for automotive applications
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The mechanical properties of dissimilar resistance spot-welded DP600-DP1000 steel joints for automotive applications

机译:汽车应用异种电阻点焊DP600-DP1000钢接头的机械性能

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摘要

A study was conducted to investigate the microstructure and the mechanical properties of dissimilar resistance spot welds between steel sheets of DP600 and DP1000 using different welding currents for automotive applications. Microstructural characterization, microhardness tests and tensile shear tests of the joints were conducted. The dissimilar joints had three main microstructural zones: the base metals; the heat-affected zones of both steels; the fusion zone. Additionally, the DP1000 side of the joints also had a transition zone between the heat-affected zone and the base metal, which exhibited significant softening. Such a soft transition zone was not observed on the DP600 side. The peak hardness values were observed in the centre heat-affected zones of both sides of the joints. The welding current significantly influenced the microstructure and the mechanical properties of the joints. With increasing welding current, the nugget size increased almost linearly and the widths of the heat-affected zones on both sides became smaller. The use of higher welding currents reduced the microhardness values in the outer heat-affected zones of both sides and the fusion zone of the joints; the hardness values in these zones decreased almost linearly with increasing welding current. For a welding current of up to 10 kA, the tensile shear loads of the joints increased linearly with increasing welding current. The peak values of the tensile shear load and tensile deformation were obtained for the joints welded with a current of 10 kA. All joints exhibited the full button pull-out failure mode under the tensile shear loading test. The failure location of all joints was in the centre heat-affected zone. The joints welded with relatively lower welding currents (8-9.5 kA) failed on the DP1000 side, while the failure of the other joints fabricated with relatively higher welding currents (10-11 kA) was located on the DP600 side of the weld.
机译:进行了一项研究,以研究在汽车应用中使用不同的焊接电流,DP600和DP1000钢板之间的异种电阻点焊的组织和力学性能。对接头进行了显微组织表征,显微硬度测试和拉伸剪切测试。异种接头具有三个主要的显微组织区:贱金属;基体金属。两种钢的热影响区;融合区。此外,接头的DP1000侧面在热影响区和母材之间也有一个过渡区,表现出明显的软化。在DP600侧未观察到这样的软过渡区。在接头两侧的中心热影响区观察到峰值硬度值。焊接电流显着影响接头的微观结构和机械性能。随着焊接电流的增加,熔核尺寸几乎呈线性增加,并且两侧的热影响区的宽度变小。使用较高的焊接电流会降低两侧的外部热影响区和接头的熔合区的显微硬度值;随着焊接电流的增加,这些区域的硬度值几乎呈线性下降。对于高达10 kA的焊接电流,接头的拉伸剪切负荷随着焊接电流的增加而线性增加。对于以10 kA电流焊接的接头,获得了拉伸剪切负荷和拉伸变形的峰值。在拉伸剪切载荷试验下,所有接头均表现出全纽扣拔出失效模式。所有接头的失效位置都在中心热影响区。用较低焊接电流(8-9.5 kA)焊接的接头在DP1000侧失效,而用较高焊接电流(10-11 kA)制成的其他接头的失效位于焊缝的DP600侧。

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