高塑性应变区域有限元估计塑性应变与试验相关性的局部网格细化

K. Liu, E. Xiao, Gregory D. Westwater, C. R. Johnson, J. Mann
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引用次数: 0

摘要

用应变计测量了阀体在产生表面屈服的内压作用下的总应变,包括弹性应变和塑性应变。模拟的最大主应变与应变计数据的相关性进行了比较。一项网格敏感性研究表明,在大塑性应变区域,所需的网格单元比用于同一结构的线弹性应力分析的网格单元小一个数量级。局部网格细化足以解决局部高应变值。通过局部网格细化,最大应变的位置和大小都发生了变化。在测试的几个结构中,局部网格细化要求是一致的。测试和仿真工作将在网格灵敏度研究的同时进行。一些使用能量稳定技术来帮助收敛的结果将在预测塑性应变的影响方面提出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Local Mesh Refinement for Correlation of FEA Estimated Plastic Strain to Tests in Areas of High Plastic Strain
The total strain, elastic plus plastic, was measured with strain gages on valve bodies with internal pressure that caused surface yielding. The correlation of the simulated maximum principal strain was compared to strain gage data. A mesh sensitivity study shows that in regions of large plastic strain, mesh elements are required that are an order of magnitude smaller than what is used for linear elastic stress analysis for the same structure. A local mesh refinement was adequate to resolve the local high strain values. Both the location and magnitude of the maximum strain changed with a local mesh refinement. The local mesh refinement requirement was consistent over several structures that were tested. The test and simulation work will be presented along with the mesh sensitivity study. Some results on using an energy stabilization technique to aid convergence will be presented in terms of the impact on the predicted plastic strain.
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