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Towards a fracture mechanics for brittle piezoelectric and dielectric materials

机译:走向脆性压电和介电材料的断裂力学

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摘要

A theoretical fracture mechanics for brittle piezoelectric and dielectric materials is developed consistent with standard features of elasticity and dielectricity. The influence of electric field and mechanical loading is considered in this approach and a Griffith style energy balance is used to establish the relevant energy release rates. Results are given for a finite crack in an infinite isotropic dielectric and for steady state cracking in a piezoelectric strip. In the latter problem, the effect of charge separation in the material and discharge in the crack are considered. Observations of crack behavior in piezoelectrics under combined mechanical and electrical load are discussed to assess which features of the theory are useful.
机译:与弹性和介电的标准特征相一致,开发​​了用于脆性压电和介电材料的理论断裂力学。该方法考虑了电场和机械负载的影响,并使用格里菲斯(Griffith)风格的能量平衡来建立相关的能量释放速率。给出了在无限各向同性电介质中的有限裂纹和在压电条中的稳态裂纹的结果。在后一个问题中,考虑了材料中电荷分离和裂纹中放电的影响。讨论了在机械和电气组合载荷作用下压电体的裂纹行为观察,以评估该理论的哪些特性是有用的。

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