計算力学講演会講演論文集
Online ISSN : 2424-2799
セッションID: 101
会議情報
101 均質化理論によるハニカムの面内座屈後解析(OS06-1 メゾ組織)(OS06 材料の微視組織とその形成過程のモデル化とシミュレーション)
奥村 大大野 信忠野口 裕久
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会議録・要旨集 フリー

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This paper is concerned with stability of the uniaxial, biaxial and flower-like buckling modes of honeycombs subject to in-plane biaxial compression. One of the three buckling modes is forced to exclusively develop at multiple bifurcation points by imposing appropriate constraints on the field of microscopic velocity. Then, the internal energies generated are compared for discussing which mode is stable. Either macroscopic strain or macroscopic stress is controlled to induce microscopic buckling in computation. The followings are thus found: Under the biaxial compression in which double bifurcation occurs, the biaxial mode is stable under the two controlling conditions. Under the equi-biaxial compression in which triple bifurcation occurs, the flower-like mode is stable under macroscopic strain control, whereas the uniaxial and biaxial modes are stable under macroscopic stress control.
著者関連情報
© 2001 一般社団法人 日本機械学会
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