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Sensitivity of Solid Element Spot Weld Modeling Methodology to Nugget Diameter

机译:实体单元点焊建模方法对熔核直径的敏感性

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摘要

A vehicle's structure has more than 4000 spot welds, which can be considered as one of the main design criteria that affects the general stiffness as well as the durability of an automobile. Considering the essential role of finite element-based simulations of the spot-welded structures on the design phases of vehicle development, accuracy of analyses can be considered as one of the main concerns to meet the design objectives. This study examines the sensitivity of solid element spot weld modeling technique to nugget diameter. Comparative stress and multi-axial low cycle fatigue analyses are conducted for the inspection of the effect of weld diameter on solid element spot weld simulations. Displacement contours as well as local stress profiles at the vicinity of the spot welds are examined to evaluate the effect of nugget diameter on general stiffness and safety. Multi-axial low cycle fatigue analyses are conducted for the specimens composed of U-profiles, and different thickness levels are simulated for a set of nugget diameters. Simulation results are compared with the low cycle fatigue tests' life cycles to determine the accuracy of the solid element spot weld modeling methodology and its sensitivity to nugget diameter.
机译:汽车的结构有超过4000点焊接,可以视为最主要的一个影响一般设计标准刚度的耐久性汽车。有限元素模拟点焊结构的设计阶段汽车的发展,分析精度视为最主要的担心之一的设计目标。固体元素的灵敏度点焊建模技术金块直径。和多低循环疲劳分析进行检查的影响焊缝焊点直径在坚固的元素模拟。局部应力剖面附近的位置检查焊缝是否有评估的影响金块直径一般刚度和安全。多低循环疲劳分析进行的标本组成的U-profiles和不同厚度的水平模拟一组块直径。仿真结果都较低循环疲劳测试的生命周期来确定点焊固体元素建模的准确性方法和金块的敏感性直径。

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