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Experimental study of the mechanical strength and the failure of multi-sheet, multi-material spot-welded assemblies under pure and combined loading conditions

机译:在纯净的加载条件下的机械强度和多材料点焊组件的机械强度和失效的实验研究

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摘要

Resistance Spot Welding (RSW) is widely used in the automotive industry thanks to its production convenience and cost effectiveness. Around four thousands spot welds are indeed employed to assemble the body-in-white. RSW of multiple sheets and combining multiple materials are increasingly realized. The Ultra-High-Strength Steels (UHSS) are particularly well suited for the entire range of structural parts requiring good crash resistance. However, the mechanical strength and the rupture of such new generation of RSW under multi-axial loadings is not yet well studied. The present work investigates the mechanical strength and the failure of a three-sheet spot welded assembly composed of two sheets of UHSS 22MnB5 and a third sheet of mild steel DX54D. An advanced experimental procedure is proposed for testing this assembly in pure and combined (tensile shear modes) modes I/II. Two types of specimen with different sheet thicknesses have been studied. The obtained results are analyzed to investigate the loading angle effect and the assembly configuration effect on the mechanical strength. Failure modes are also studied in relation with the increasing of the loading angle. Finally, the parameters of a macroscopic force-based failure criterion dedicated for FE crash modeling are identified.
机译:由于其生产方便和成本效益,抵抗点焊(RSW)广泛应用于汽车行业。在大约四千次点焊焊缝确实采用了装配身体。越来越多地实现多张纸的RSW和组合多种材料。超高强度钢(UHSS)特别适用于需要良好碰撞性的结构部件范围。然而,在多轴载荷下,这种机械强度和这种新一代RSW的破裂尚未得到很好的研究。本作工作调查了由两片UHS22MNB5和第三片低温钢DX54D组成的三页点焊组件的机械强度和故障。提出了一种先进的实验程序,用于以纯净和合并的(拉伸剪切模式)模式I / II测试该组件。研究了两种具有不同纸张厚度的样品。分析所得结果以研究装载角效应和组装配置对机械强度的影响。在增加装载角度,还研究了失效模式。最后,鉴定了专用于FE碰撞建模的基于宏观力的失效标准的参数。

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