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鎢合金變形微觀力學行為的計算機數值模擬

Computer Numerical Simulation of Micro-mechanical Behavior of Tungsten Heavy Alloys

  • 摘要: 提出了鎢合金的組織結構模型.在此基礎上通過有限元法對鎢合金拉伸變形時組織結構中的應力分布及其變化規律進行了計算機數值模擬研究.結果表明:鎢合金拉伸變形時拉伸方向最大正應力和最大Mises應力區域在鎢顆粒相中,同時鎢顆粒還將受到垂直于拉伸方向的壓應力;最大剪切應力分布在粘結相中,隨拉伸變形增加,粘結相最先進入塑性狀態;由于粘結相的塑性變形,鎢合金中應力不斷重組,應力逐漸在鎢顆粒中集中.

     

    Abstract: A microstructure model of tungsten heavy alloys has been developed. On the basis of the model, the micro-mechanical behavior of tungsten heavy alloys under tensile deformation has been analyzed by computer numerical simulation with finite element method (FEM).The results show that the maximum stress is in the tensile direction and the maximum Mises stress is in tungsten grains, and there is a compressive stress in them, which is perpendicular to the tensile direction. The maximum shear stress and the first plastic flow in tungsten heavy alloys take place in matrix under tensile deformation. As the tensile deformation increases, the stress concentrates onto tungsten grains.

     

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