The influence of partial discharge on crack propagation in piezoelectric materials

Peng-zhou Li, Jia-cheng Luo
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Abstract

This paper studies the influence of partial discharge (PD) on crack propagation in piezoelectric materials under combined mechanical and electric loads. According to Stroh formalism, the electric field is obtained based on the semi-permeable electrical boundary condition inside the crack. Then, the crack propagation effects of the electric field without PD are discussed through considering the contribution of the induced electric field inside the deformed crack space to the total energy release rate, and the effect of partial discharge on the crack propagation is also derived under the assumption of the streamer-type mechanism. Finally, the electric field curves and the energy release rate before PD are numerically calculated in the condition of different environments under remote mechanic-electric loads to investigate its effects on crack growth. It is found that the process of partial discharge is very complex and accompanied with randomness in a semi-permeable crack, and the applied mechanical stress, the electric field and dielectric ratio have influence on the crack propagation of piezoelectric materials.
局部放电对压电材料裂纹扩展的影响
研究了压电材料在机电复合载荷作用下局部放电对裂纹扩展的影响。根据Stroh的形式,根据裂纹内部的半透电边界条件得到了电场。然后,通过考虑变形裂纹空间内的感应电场对总能量释放率的贡献,讨论了不加PD的电场对裂纹扩展的影响,并在流线型机制的假设下推导了局部放电对裂纹扩展的影响。最后,数值计算了远距离机电载荷作用下不同环境条件下PD前的电场曲线和能量释放率,研究了其对裂纹扩展的影响。研究发现,半渗透裂纹局部放电过程非常复杂且具有随机性,外加机械应力、电场和介电比对压电材料的裂纹扩展有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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