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FEA Development of Spot Weld Modeling with Fracture Forming Limit Diagram(FFLD) Failure Criteria and Its Application to Vehicle Body Structure

机译:FEA开发点焊建模与断裂形成限位图(FFLD)故障标准及其在车身结构的应用

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Spot weld separation in vehicle development stage is one of the critical phenomena in structural analyses regarding quasi-static test condition, like roof strength or seat/belt pull. It directly reduces structural performance by losing connected load path and occasionally introduces tearing on surrounding sheet metals. Traditionally many efforts have been attempted to capture parent metal ductile fracture, but not applied to spot weld separations in automotive FEA simulations. [1,2,3]This paper introduces how to develop FFLD failure criteria from a series of parametric study on ultra high strength sheet steel and deals with failure criteria around spot weld and parent metal. Once the fracture strains for sheet steels are determined, those developed values were applied to traditional spot weld coupon FEA simulations and tests. Full vehicle level roof strength FEA simulations on a typical automotive body structure were performed and verified to the physical tests. Developed FFLD curves have been used for both spot weld and parent metal and good correlations have been achieved. Various mesh patterns and sizes around spot welds have been investigated. Finally, an optimized weld pattern and mesh size have been suggested for quasi static load cases and successfully applied to vehicle body structures.
机译:车辆开发阶段的点焊分离是关于准静态测试条件的结构分析中的关键现象之一,如屋顶强度或座椅/皮带拉动。它通过输掉连接的负载路径直接降低了结构性性能,偶尔会引入撕裂环形金属金属。传统上,已经尝试捕获母体金属延性的许多努力,但不适用于汽车FEA模拟中的点焊分离。 [1,2,3]本文介绍了如何从一系列关于超高强度板钢的一系列参数研究开发FFLD故障标准,并在点焊和母金属周围处理故障标准。一旦确定了片状钢的骨折菌株,那么将这些显影值应用于传统的点焊优惠券FEA模拟和测试。在典型的汽车车身结构上进行全车级屋顶强度FEA模拟并验证到物理测试。开发的FFLD曲线已用于点焊,母体金属和良好的相关性已经实现。已经研究了各种网状图案和围绕点焊的尺寸。最后,已经提出了优化的焊接图案和网眼尺寸用于准静态载荷盒,并成功地应用于车身结构。

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