Applied Mathematics and Mechanics (English Edition) ›› 1986, Vol. 7 ›› Issue (11): 1115-1124.

• 论文 • 上一篇    

ELASTIC-PLASTIC FIELDS NEAR CRACK TIP GROWING STEP-BY-STEP IN A PERFECTLY PLASTIC SOLID

王自强   

  1. Institute of Mechanics, Academia Sinica, Beijing
  • 收稿日期:1985-09-17 出版日期:1986-11-18 发布日期:1986-11-18

ELASTIC-PLASTIC FIELDS NEAR CRACK TIP GROWING STEP-BY-STEP IN A PERFECTLY PLASTIC SOLID

Wang Tzu-Chiang   

  1. Institute of Mechanics, Academia Sinica, Beijing
  • Received:1985-09-17 Online:1986-11-18 Published:1986-11-18

摘要: In this paper, based on the three-dimensional flow theory of plasticity, the fundametal equations for plane strain problem ofelastic-perfectly plastic solids are presented. By using these equations the elastic-plastic fields near the crack tip growing step-by-step in an elastic incompressible-perfectly plastic solid are analysed.The first order asymptotic solutions for the stress field and velocity fields near the crack tip are obtained. The solutions show the evolution process of elastic unloading domain and the development process of central fan domain and reveal the possibility of the presence of the secondary plastic domain. The second order asymptotic solution for stress field is also presented.

关键词: microtubule buckling, orthotropic Winkler-like model, elastic medium

Abstract: In this paper, based on the three-dimensional flow theory of plasticity, the fundametal equations for plane strain problem ofelastic-perfectly plastic solids are presented. By using these equations the elastic-plastic fields near the crack tip growing step-by-step in an elastic incompressible-perfectly plastic solid are analysed.The first order asymptotic solutions for the stress field and velocity fields near the crack tip are obtained. The solutions show the evolution process of elastic unloading domain and the development process of central fan domain and reveal the possibility of the presence of the secondary plastic domain. The second order asymptotic solution for stress field is also presented.

Key words: microtubule buckling, orthotropic Winkler-like model, elastic medium

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