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不同压电介质界面上的反平面运动裂纹

不同压电介质界面上的反平面运动裂纹

ISSN:0254-7805
1999年第20卷第1期
陈增涛,余寿文; Chen Zengtao Yu Shouwen

利用积分变换技术,得到不同压电介质界面上的平面运动裂纹问题的分析解。结果表明应力及电位移强度因子均与界面裂纹扩展速度及材料参数相关,这不同于均匀压电介质中运动裂纹的结论,当两种压电介质完全相同时,本文结果将退化为均匀压电介质中反平面运动裂纹问题的解。

The problem of an anti plane Griffith crack moving along the interface of dissimilar piezoelectric materials is solved by using the integral transform technique. It is shown from the result that the intensity factors of anti plane stress and electric displacement around the crack tip are dependent on the speed of the Griffith crack as well as the material coefficients. When the two piezoelectric materials are identical, the present result will be reduced to the result for the problem of an anti plane moving Griffith crack in homogeneous piezoelectric materials.

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ISSN:0254-7805
1999年第20卷第1期

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