Applied Mathematics and Mechanics (English Edition) ›› 1992, Vol. 13 ›› Issue (3): 289-295.

• 论文 • 上一篇    

EFFECT OF THE POISSON RATIO ON THE PERFECTLY PLASTIC STRESS FIELD AT A STATIONARY PLANE-STRAIN CRACK TIP

林拜松   

  1. Central-South University of Technology, Changsha
  • 收稿日期:1989-08-10 出版日期:1992-03-18 发布日期:1992-03-18
  • 通讯作者: Chien Wei-zang

EFFECT OF THE POISSON RATIO ON THE PERFECTLY PLASTIC STRESS FIELD AT A STATIONARY PLANE-STRAIN CRACK TIP

Lin Bai-song   

  1. Central-South University of Technology, Changsha
  • Received:1989-08-10 Online:1992-03-18 Published:1992-03-18

摘要: Under the condition that all the perfectly plastic stress components at a crack tip are the functions of θ only, making use of equilibrium equations and Von-Mises yield condition containing Poisson ratio, in this paper, we derive the generally analytical expressions of perfectly plastic stress field at a stationary plane-strain crack tip. Applying these generally analytical expressions to the concrete cracks, the analytical expressions of perfectly plastic stress fields at the stationary tips of Mode Ⅰ, Mode Ⅱ and Mixed-Mode Ⅰ-Ⅱ plane-strain cracks are obtained. These analytical expressions contain Poisson ratio.

关键词: Poisson ratio, plane-strain, stationary crack-tip, perfectly-plastic stress fields, generally analytical expression

Abstract: Under the condition that all the perfectly plastic stress components at a crack tip are the functions of θ only, making use of equilibrium equations and Von-Mises yield condition containing Poisson ratio, in this paper, we derive the generally analytical expressions of perfectly plastic stress field at a stationary plane-strain crack tip. Applying these generally analytical expressions to the concrete cracks, the analytical expressions of perfectly plastic stress fields at the stationary tips of Mode Ⅰ, Mode Ⅱ and Mixed-Mode Ⅰ-Ⅱ plane-strain cracks are obtained. These analytical expressions contain Poisson ratio.

Key words: Poisson ratio, plane-strain, stationary crack-tip, perfectly-plastic stress fields, generally analytical expression

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