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首页> 外文期刊>Journal of Materials Engineering and Performance >Direct Finite Element Analysis of the Stress Evolution and Interaction in Resistance Spot Welding with Multiple Processes and Multiple Spots Based on Reverse Engineering Technology
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Direct Finite Element Analysis of the Stress Evolution and Interaction in Resistance Spot Welding with Multiple Processes and Multiple Spots Based on Reverse Engineering Technology

机译:基于逆向工程技术的多工艺和多个斑点的电阻点焊应力进化和相互作用的直接有限元分析

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摘要

The current work achieved quantitative analysis of stress evolution and interaction in continuous spot welding processes that consider the stamping dimensional deviation. The reverse component that contains the stamping dimensional deviation was first established with reverse engineering technology. Then the two spot welding processes with twenty weld spots were simulated by the direct finite element analysis method. Welding experiment was conducted, and the actual residual deformation was measured by a 3D laser scanning system to validate the finite element model. The measured deformation shows good agreement with the simulated one. After that, the stress evolution was analyzed through the transient stress at a single spot weld and the peak stress during the entire welding process. The stress interaction between the spot welds in the same process and in the different processes was also analyzed. The results show that the stress interaction depends on the distance between the spot welds, the distribution of the spot welds, and the structure of the sheet metal parts. It is difficult to generalize a universal theorem to predict stress interaction. The value of the current research lies in its achievement in quantitative analysis of the stress evolution and interaction in components containing stamping dimensional deviation with direct finite element analysis, which can be extended to other complex components.
机译:目前的工作达到了考虑冲压尺寸偏差的连续点焊接过程中应力演化和相互作用的定量分析。首先用逆向工程技术建立包含冲压尺寸偏差的反向分量。然后通过直接有限元分析方法模拟具有二十焊点的两种点焊过程。进行焊接实验,通过3D激光扫描系统测量实际残留变形,以验证有限元模型。测量的变形显示了与模拟的变形良好。之后,通过在整个焊接过程中通过瞬态应力和峰值应力分析应力进化。还分析了同一过程中的点焊与不同方法之间的应力相互作用。结果表明,应力相互作用取决于点焊之间的距离,光斑焊缝的分布以及金属板的结构。难以概括通用定理来预测压力相互作用。目前研究的价值在于其在含有直接有限元分析的冲压尺寸偏差的组分的应力演化和相互作用的定量分析中的成就,这可以扩展到其他复杂的组分。

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