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Adaptive enrichment meshfree simulation and experiment on buckling and post-buckling analysis in sheet metal forming

机译:钣金成形中屈曲和后屈曲分析的自适应富集无网格模拟和实验

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Sheet buckling, a form of instability, is one of the major considerations in the design of part shape, die geometry and processing parameters of sheet metal forming. In this study, an adaptive enrichment meshfree method is developed to capture wrinkling and post-buckling behavior in sheet metal forming. A three-dimensional meshfree continuum approach is applied to the large deformation of plate/shell structures. A stress-based wrinkling predictor is used to predict the onset of buckling within effective compressive regions. Enrichment particles with a proper enrichment function are inserted/deleted in those regions to capture the buckling mode and therefore post-buckling behavior. For verification of the simulation results, a high-resolution wedge strip test is designed to study the onset and post-buckling behavior of a sheet under different boundary conditions.
机译:板屈曲是一种不稳定性,是设计零件形状,模具几何形状和钣金成形加工参数时的主要考虑因素之一。在这项研究中,开发了一种自适应富集无网格方法来捕获钣金成形中的起皱和后屈曲行为。三维无网格连续体方法应用于板/壳结构的大变形。基于应力的起皱预测器用于预测有效压缩区域内屈曲的发生。在那些区域中插入/删除具有适当富集功能的富集粒子,以捕获屈曲模式,从而捕获屈曲后的行为。为了验证模拟结果,设计了高分辨率楔形条测试来研究在不同边界条件下板材的起皱和后屈曲行为。

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