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Investigation on the Failure Mechanism of DP590-22MnB5(quenched) and DP590-DP590 Spot-welding Joints

机译:DP590-22MnB5(淬火)和DP590-DP590点焊接头的失效机理研究

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摘要

The failure mechanism of DP590-22MnB5(quenched) and DP590-DP590 spot-welding joints is studied through lap-shearing experiments, metallographic observation and three-dimensional finite element simulation. Both joints cracked on the DP590 steel, but the tensile shear strength of the DP590-22MnB5(quenched) joint is greater than that of the DP590-DP590 joint. A finite element model for the lap-shearing experiment is established according to the mechanical properties of DP590 and 22MnB5(quenched) steels and the metallographic analysis of welding spots. The simulation results show that the difference in the axis rotation of the two welding spots causes different distributions of stress and strain, which shifts shear loading condition to opening loading condition. Due to larger axis rotation angle of the DP590-DP590 joint, the stress concentration occurs at the middle of the nugget circumference, and it results in lower tensile shear strength of the DP590-DP590 joint.
机译:通过搭接剪切实验,金相观察和三维有限元模拟研究了DP590-22MnB5(淬火)和DP590-DP590点焊接头的失效机理。两个接头在DP590钢上均开裂,但DP590-22MnB5(淬火)接头的拉伸剪切强度大于DP590-DP590接头的拉伸剪切强度。根据DP590和22MnB5(淬火)钢的力学性能以及焊点的金相分析,建立了搭接剪切实验的有限元模型。仿真结果表明,两个焊点轴线旋转的差异会引起应力和应变的不同分布,从而使剪切载荷条件转变为开放载荷条件。由于DP590-DP590接头的轴旋转角度较大,应力集中发生在熔核圆周的中间,这会导致DP590-DP590接头的拉伸剪切强度降低。

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