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Effects of local stiffness on the spot joints mechanical properties: Comparative study between resistance spot welding and resistance spot clinching joints

机译:局部刚度对点焊点力学性能的影响:电阻点焊和电阻点焊接头的比较研究

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摘要

Different types of aluminum alloy 5052 (AA5052) resistance spot clinching joints with different local stiffness values were designed in this study. The values of the polar moment of inertia in the cross-section of the fusion zones were calculated. Digital image correlation (DIC) technique was used to study the local rotation and in-plane strain distribution during the lap-shear test of half-cut samples. The results show that the joint with higher local stiffness (polar moment of inertia) value experiences the lowest joining zone rotation during the lap-shear test. This leads to higher proportion of normal component of strain/stress at the periphery of the joining zone. According to Tresca or von Mises failure criterion, for a spot joint, high proportion of normal stress at the load-bearing site enables the global joint to sustain high peak load during tensile test. This mechanism indicates that, compared with conventional resistance spot welding process, the resistance spot clinching technique can improve the mechanical properties of AA5052 joints by increasing the local stiffness.
机译:本研究设计了具有不同局部刚度值的不同类型的铝合金5052(AA5052)电阻点压接接头。计算出融合区域横截面中的极惯性矩值。使用数字图像相关(DIC)技术研究半切样品的搭接剪切测试期间的局部旋转和面内应变分布。结果表明,在搭接剪切试验中,具有较高局部刚度(极惯性矩)值的接头的接合区旋转最低。这导致在接合区域的外围较高比例的正常应变/应力分量。根据Tresca或von Mises破坏准则,对于点状接头,在承重部位高比例的法向应力可使整体接头在拉伸试验期间承受较高的峰值载荷。这种机理表明,与传统的电阻点焊工艺相比,电阻点焊技术可以通过增加局部刚度来改善AA5052接头的机械性能。

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