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Anti-plane fracture mechanics analysis of a piezoelectric material layer with strain and electric field gradient effects

机译:压电材料层的反平面断裂力学分析,菌株和电场梯度效应

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摘要

The problem of an anti-plane crack in a polarized ceramic layer with both the strain and electric field gradient effects is studied. This model includes two characteristic length parameters l and m which describes the strain gradient and the electric field gradient effects, respectively. The analysis demonstrates that the near-tip asymptotic stress and electric displacement are governed by r(-3/2) singularities. Due to stain gradient effect, stresses ahead of the crack tip are significantly higher than those in the classical linear piezoelectricity fracture mechanics. When the strain and electric field gradient parameters decrease to sufficiently small, the solutions reduce to the conventional linear elastic fracture mechanics results. The new contribution of this research is that it includes the effects of the strain gradient and electric field gradient simultaneously for a finite crack in a finite piezoelectric layer. (C) 2019 Elsevier Ltd. All rights reserved.
机译:研究了具有应变和电场梯度效应的偏振陶瓷层中的抗平面裂缝的问题。 该模型包括两个特征长度参数L和M,分别描述应变梯度和电场梯度效果。 该分析表明,近尖渐近应力和电置换由R(-3/2)奇点控制。 由于污渍梯度效果,裂纹尖端前方的应力显着高于经典线性压电断裂力学中的应力。 当应变和电场梯度参数减小到足够小时,解决方案减少到传统的线性弹性断裂力学结果。 该研究的新贡献是,它包括应变梯度和电场梯度同时对有限压电层中的有限裂缝的影响。 (c)2019年elestvier有限公司保留所有权利。

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