M&M材料力学カンファレンス
Online ISSN : 2424-2845
セッションID: OS0317
会議情報
OS0317 六方晶金属の変形双晶モデルの構築とその結晶塑性シミュレーションへの適用
石田 智広渋谷 慎兵加藤 準治寺田 賢二郎京谷 孝史安藤 大輔小池 淳一
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会議録・要旨集 フリー

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抄録
A thermodynamics-based constitutive model, which accounts for both crystallographic slip and deformation twinning, is developed for a single crystal of hcp metals within the framework of finite crystal plasticity. While the volume fractions of stress-free twin deformations are introduced as internal variables, the free-energy involves the bulk energy of separate phases and the surface energy at twin interfaces, which are introduced as functions of the internal variables, in addition to the standard hardening-related energy in crystal plasticity framework. After the formulation is described in detail, a series of numerical examples is presented to verify the performance of the proposed model in predicting the deformation twinning, the successive deformation process and the twinning-induced stress responses. The results are studied with reference to the theoretical consequences and the experimental results reported in the literature.
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© 2012 一般社団法人 日本機械学会
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