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首页> 外文期刊>Acta Mechanica >Influence of inclined electric fields on the effective fracture toughness of piezoelectric ceramics
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Influence of inclined electric fields on the effective fracture toughness of piezoelectric ceramics

机译:倾斜电场对压电陶瓷有效断裂韧性的影响

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摘要

Electric fields effectuate the fracture behavior of ferroelectrics on different scales. On the atomic scale, forces in covalent bonds are influenced. On the mesoscopic scale, the ferroelectric domain wall motion shields the crack tip or leads to an additional loading. Based on classical approaches, on the macroscopic scale, the electric field has a major impact on the energy release rate and the electric displacement intensity factor; however, it scarcely influences the mechanical stress intensity factors. The situation is different if Maxwell stresses at crack faces, as a consequence of the jump of dielectric properties, are incorporated in the crack tip loading analysis. First, general considerations deal with the question how a fracture criterion has to be formulated, incorporating all three scales. On the macroscopic scale, the influence of an arbitrarily inclined electric field on the critical mechanical crack loading is investigated. The extended model, in particular, reveals the significance of electric fields parallel to the crack faces. A combined analytical-numerical approach is applied to solve the coupled two-domains problem of solid and crack dielectric, supporting the well-established capacitor approach even for inclined electric fields.
机译:电场在不同尺度上影响铁电体的断裂行为。在原子尺度上,共价键中的力受到影响。在介观尺度上,铁电畴壁的运动屏蔽了裂纹尖端或导致了额外的载荷。基于经典方法,在宏观尺度上,电场对能量释放速率和电位移强度因子有重大影响。但是,它几乎不会影响机械应力强度因子。如果由于介电特性跳跃而在裂纹面上产生的麦克斯韦应力被包含在裂纹尖端载荷分析中,则情况就不同了。首先,一般的考虑是关于必须如何制定断裂准则的问题,包括所有三个等级。在宏观尺度上,研究了任意倾斜电场对临界机械裂纹载荷的影响。扩展模型尤其揭示了平行于裂纹面的电场的重要性。运用一种组合的分析数值方法来解决固体和裂纹电介质的耦合两畴问题,即使对于倾斜电场,也支持完善的电容器方法。

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