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Hierarchical Strategy for Analysis of Materials with Complex Microstructure

机译:具有复杂微观结构的材料的层次分析策略

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An earlier work introduced a new strategy where the natural hierarchical character of model descriptions and simulation results are exploited to expedite analysis of problems. Hierarchical techniques were used in the development, organization, and management of finite element models, and for the post-processing of the results from the analyses. In the current work, the hierarchical strategy is used to analyze materials that have complex microstructure. The hierarchical analysis environment is used to analyze a Double Cantilever Beam (DCB) specimen fabricated with woven composite. Such a configuration contains many microstructural scales such as fiber/matrix, tow architecture and laminate. The results of a detailed finite element stress analysis on the DCB specimen are presented.
机译:较早的工作引入了一种新策略,其中利用了模型描述和仿真结果的自然分层特性来加快问题分析速度。分层技术被用于有限元模型的开发,组织和管理,以及对分析结果的后处理。在当前的工作中,分层策略用于分析具有复杂微观结构的材料。层次分析环境用于分析由编织复合材料制成的双悬臂梁(DCB)标本。这种配置包含许多微观结构尺度,例如纤维/基质,丝束结构和层压板。给出了对DCB试样进行详细的有限元应力分析的结果。

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