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Tensile strength and failure simulation of simplified spot weld models

机译:简化点焊模型的拉伸强度和破坏模拟

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摘要

A simple model for spot weld joints is desirable in body-in-white automotive structures which contains thousands of them. Hence, comparative performance and failure prediction study of six simplified spot weld models in terms of their geometric and constitutive properties are presented in this paper. The stiffness characteristics of these models under tensile loading condition were compared with the experimental results. It was found that the current spot weld modelling practice in the automotive industry predict the strength with 45.33% of error. To simulate the joint failure a material damage criterion correlating ultimate tensile strength of material was implemented in the developed models. The comparative study with respect to the accuracy was also related with the computational cost incurred by the different models. Hence, suitable modelling conditions to design a finite element model for spot welded joints are established which is very simple to develop, relatively cheap in terms of computational costs but yet predicts reasonably accurate results.
机译:在包含数千个白车身的汽车结构中,需要一种简单的点焊接头模型。因此,本文提出了六个简化点焊模型的几何和本构特性的比较性能和失效预测研究。将这些模型在拉伸载荷条件下的刚度特性与实验结果进行了比较。结果发现,当前汽车行业的点焊建模实践可以预测强度,误差为45.33%。为了模拟接头失效,在开发的模型中实施了与材料的极限抗拉强度相关的材料破坏准则。关于准确性的比较研究还与不同模型所产生的计算成本有关。因此,建立了用于设计点焊接头的有限元模型的合适建模条件,该条件非常易于开发,在计算成本方面相对便宜,但可以预测合理的精确结果。

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