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MESH CONVERGENCE STUDIES FOR THIN SHELL ELEMENTS DEVELOPED BY THE ASME TASK GROUP ON COMPUTATIONAL MODELING

机译:由ASME任务组开发的薄壳元素对计算建模的薄壳元件的网格融合研究

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The ASME Task Group on Computational Modeling tor Explicit Dynamics was founded in August 2008 for the purpose of creating a quantitative guidance document for the development of finite element models used to analyze energy-limited events using explicit dynamics software. This document will be referenced in the ASME Code Section III, Division 3 and the next revision of NRC Regulatory Guide 7.6 as a means by which the quality of a finite element model may be judged. One portion of the document will be devoted to a series of element convergence studies that can aid designers in establishing the mesh refinement requirements necessary to achieve accurate results for a variety of different elements types in regions of high plastic strain. These convergence studies will also aid reviewers in evaluating the quality of a finite element model and the apparent accuracy of its results. In this paper the authors present the results of a convergence study for an impulsively loaded propped cantilever beam constructed of LS-DYNA thin shell elements using both reduced and full integration. Three loading levels are considered; the first maintains strains within the elastic range, the second induces moderate plastic strains, and the third produces large deformations and large plastic strains.
机译:用于计算建模的ASME任务组明确动态成立于2008年8月,目的是为使用显式动力学软件开发用于分析能量有限事件的有限元模型的定量指导文件。本文档将在ASME Code III,第3部分和NRC调节指南7.6的下一次修订中引用,作为可以判断有限元模型的质量的方法。该文件的一部分将致力于一系列元素收敛研究,可以帮助设计人员建立在高塑性应变区域中实现各种不同元素类型所需的网眼细化要求。这些收敛性研究还将帮助审阅者评估有限元模型的质量和结果的表观准确性。在本文中,作者介绍了使用减少和完全集成的LS-DYNA薄壳元件构成的冲动负载的悬臂梁的收敛研究的结果。考虑了三个装载水平;首先保持弹性范围内的菌株,第二诱导中等塑性菌株,第三种产生大变形和大塑料菌株。

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