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Computation al micro-macro-transitions in thermoplastic analysis at finite strains

机译:有限应变下热塑性分析中的微宏观转变计算

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We discuss aspects of the formulation and numerical implementation of homogenization methods for the simulation of macroscopic thermomechanical material response of heterogeneous materials. Homogenization approaches based on average theorems as outlined e.g. by Hill [2], Suquet [10], Bruhns [1], Nemat-Nasser and Hori [8] are recast into a straightforward computational procedure for micro-macrotransitions at large strains. The proposed concept is suitable for the numerical analysis of macroscopic phenomena of materials with complex microstructures, such as texture developments in metallic polycrystals or overall properties of granular and composite materials.
机译:我们讨论了均质化方法的公式化和数值实现方面,以模拟异质材料的宏观热机械材料响应。均质化方法基于平均定理,例如Hill [2],Suquet [10],Bruhns [1],Nemat-Nasser和Hori [8]的研究将其重铸为简单的计算程序,适用于大应变下的微宏转变。提出的概念适用于对具有复杂微观结构的材料的宏观现象进行数值分析,例如金属多晶中的织构发展或颗粒和复合材料的整体性能。

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