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Electro-mechanical singularities of piezoelectric bi-material notches and cracks

机译:压电双材料缺口和裂缝的机电奇异性

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The paper aims to carefully investigate an asymptotic in-plane problem of bi-material sharp notches with various geometry and interface cracks in several generally monoclinic piezoelectric bi-materials using the expanded Lekhnitskii-Eshelby-Stroh formalism. A special attention is paid to the change of the asymptotic solution connected with the transition of a very closed notch into an interface crack. Also the influence of arbitrary oriented poling directions upon asymptotic solution is investigated. Four pair-combinations PZT-5H/BaTiO3, PZT-5H/PZT-6B, PZT-5H/PZT-7A and PZT-6B/PZT-7A as representatives of the so-called epsilon-class of bi-materials and six pair-combinations PZT-4/BaTiO3, PZT-4/PZT-5H, PZT-4/PZT-6B, PZT-4/PZT-7A, PZT-6B/BaTiO3, and PZT-7A/BaTiO(3 )as representatives of the kappa-class of bi-materials are analysed. It is shown that the bi-material classification into epsilon-class and kappa-class introduced by Ou and Wu (2003) for interface cracks cannot be applied to a bi-material notch with a geometry characterized by an arbitrary angle. Ou and Wu bi-material classification also fails for interface cracks if one of the poling angles differs from 90 degrees. The two-state integral derived from Beth's reciprocal principle for piezoelectric bi-materials is used to evaluate general stress intensity factors (GSIFs) for various piezoelectric bi-materials and notch configurations. The accuracy of GSIFs calculations is tested by comparing the asymptotic solutions with the results obtained by finite element method using a very fine mesh.
机译:本文旨在仔细研究使用膨胀的lekhnitskii-eShelby-stroh形式主义的几种几何形状和界面裂缝与各种几何形状和界面裂缝的双层尖锐槽口的渐近面内问题。在与非常闭合的凹口转换到界面裂缝中,对渐近解决方案的变化进行了特别的注意。研究了对渐近溶液对渐近溶液的任意取向极化方向的影响。四对组合PZT-5H / BATIO3,PZT-5H / PZT-6B,PZT-5H / PZT-7A和PZT-6B / PZT-7A作为所谓的EPSILON类双材料和六对的代表 - Combinations PZT-4 / Batio3,PZT-4 / PZT-5H,PZT-4 / PZT-6B,PZT-4 / PZT-7A,PZT-6B / BATIO3和PZT-7A / BATIO(3)作为代表分析了Kappa类的双材料。结果表明,由OU和Wu(2003)引入的epsilon-阶级和Kappa-类用于界面裂缝的双重物质分类不能应用于具有由任意角度特征的几何形状的双层物质凹口。如果一个极化角度与90度不同,则ou和wu bi-materials分类也失败了界面裂缝。来自BETH的压电双材料的互惠原理的两个状态集成用于评估各种压电双材料和凹口配置的一般应力强度因子(GSIF)。通过使用非常精细的网格比较通过有限元方法获得的结果来测试GSIFS计算的准确性。

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