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Energy Release Rate of Delaminated Piezoelectric Shell Subjected to Electro-thermo-mechanical Loadings

机译:电热机械载荷的分层压电壳能量释放速率

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The delamination growth may occur in delaminated piezoelectric shell subjected to external load and it will further cause structural failure. Based on the variational principle of moving boundary and considering the contact effect between delamination regions, in this paper, the nonlinear governing equations for the delaminated piezoelectric shell under electro-thermomechanical loadings are derived, and the corresponding boundary and matching conditions are given. At the same time, according to the Griffith criterion, the formulas of energy release rate along the delamination front are obtained and the delamination growth is studied. In the numerical calculation, the energy release rate and delamination growth of axisymmetrical piezoelectric cylindrical shell are analyzed, and the effects of voltage, temperature and humidity, mechanical load, delamination length and depth on delamination growth are discussed.
机译:分层生长可能发生在受外部载荷的分层压电壳中,并将进一步引起结构性故障。基于移动边界的变分原理并考虑分层区域之间的接触效果,在本文中,推导出电热机械载荷下分层压电壳的非线性控制方程,并给出了相应的边界和匹配条件。同时,根据Griffith标准,获得沿分层前沿的能量释放速率公式,并研究了分层生长。在数值计算中,分析了轴对称压电圆柱壳的能量释放率和分层生长,并讨论了电压,温度和湿度,机械负荷,分层长度和深度对分层生长的影响。

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