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Nonlinear finite element analysis of crack growth at the interface of rubber-like bimaterials

机译:橡胶状双材料界面裂纹扩展的非线性有限元分析

摘要

This paper presents the characteristics of the crack growth at the interface of rubber-rubber and rubber-steel bimaterials under tensile deformation using the non-linear finite element method. By using the commercial finite element software ABAQUS, the J integral calculations are carried out for the initial interface crack in the interfaces in-between two Neo-Hookean materials, two Mooney-Rivlin materials, Neo-Hookean and Mooney-Rivlin rubbers, Neo-Hookean and Polynomial, Mooney-Rivlin and Polynomial, and the Mooney-Rivlin and steel bi-materials. The computational results of the maximum J integral direction around the crack tip illustrate the possible direction of crack growth initiation. Furthermore, it is found that the crack bends to the softer rubber material at a certain angle with the initial crack direction if the crack depth is relatively small. For the crack with a larger depth, the crack propagates to grow along the interface in-between the bimaterials.
机译:利用非线性有限元方法,研究了拉伸变形下橡胶-橡胶-橡胶-钢双材料界面的裂纹扩展特征。通过使用商业有限元软件ABAQUS,对两种Neo-Hookean材料,两种Mooney-Rivlin材料,Neo-Hookean和Mooney-Rivlin橡胶,Neo-Hope橡胶之间的界面中的初始界面裂纹进行了J积分计算。 Hookean和多项式,Mooney-Rivlin和多项式,以及Mooney-Rivlin和钢双材料。裂纹尖端周围最大J积分方向的计算结果说明了裂纹扩展开始的可能方向。此外,发现如果裂纹深度较小,则裂纹以与初始裂纹方向成一定角度弯曲至较软的橡胶材料。对于较大深度的裂纹,裂纹沿双材料之间的界面传播并扩展。

著录项

  • 作者

    Yang X; Fu M; Wang X; Liu X;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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