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Material behavior modelling in micro/meso-scale forming process with considering size/scale effects

机译:考虑尺寸/尺度效应的微观/中尺度成形过程中的材料行为建模

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Size effects make most know-how of traditional macro forming inappropriate for the micro forming process. Material behavior greatly varies in micro forming process with the decreasing of the scale. The purposes of this paper are to analyze the influence of material size effects and establish a martial model in micro/meso-scale. By combining surface model with theories of single crystal and polycrystal, a mixed material model, which contains a size dependent term and a size independent term, is proposed in this paper. It finds that the flow stress of material in micro/meso-scale is between that of single crystal model (lower bound) and polycrystall model (upper bound). Based on a mixed material model, the influence of size effects is discussed in both micro bulk forming process and micro sheet forming process. At the end, the validity of the mixed model is approved by comparing the simulations with the experimental results. (C) 2008 Elsevier B.V. All rights reserved.
机译:尺寸效应使传统的宏观成型技术不适合微观成型工艺。随着尺寸的减小,材料性能在微成形过程中变化很大。本文的目的是分析材料尺寸效应的影响并建立微观/中尺度的军事模型。通过将表面模型与单晶和多晶理论相结合,提出了一种包含大小相关项和大小无关项的混合材料模型。发现材料在微观/中观尺度上的流变应力介于单晶模型(下界)和多晶模型(上限)之间。基于混合材料模型,讨论了尺寸效应的影响。最后,通过将仿真与实验结果进行比较,证明了混合模型的有效性。 (C)2008 Elsevier B.V.保留所有权利。

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