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Influence of the fracture process zone in ferroelectrics on the effective fracture toughness

机译:铁骨折过程区对铁电解对有效裂缝韧性的影响

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摘要

A model is presented to calculate the influence of ferroelectric/ferroelastic domain switching near a crack tip on the effective fracture toughness of piezoelectric ceramics. The switch-toughening effect is quantified in terms of intrinsic field intensity factors accounting for residual fields within the fracture process zone which are due to constraints at the boundary of the switching zone. The intrinsic field intensity factors themselves depend on the external electromechanical loading of the cracked body and thus can clearly be expressed in terms of the intensity factors of the applied loading. These can also account for the effects of an electrical permeability of the crack. The extension of the process zone is calculated using closed-form solutions for the asymptotic crack tip fields in connection with a domain switching criterion. Subsequently, the amount of switch-toughening is calculated applying a weight function technique. Therefore, crack weight functions have been derived for the real anisotropy in piezoelectrics.
机译:提出了一种模型,以计算铁尖附近裂纹尖端附近的铁电/旋转域切换对压电陶瓷有效破裂韧性的影响。根据骨折处理区内的残留场的固有场强度因子来定量开关增韧效果,这是由于切换区域的边界的约束。本体场强度因素本身取决于裂纹体的外部机电负荷,因此可以清楚地表达施加的载荷的强度因子。这些还可以解释裂缝的电渗透磁性的影响。使用与域切换标准有关的渐近裂纹尖端字段的闭合形式解决方案来计算处理区的扩展。随后,计算施加重量函数技术的开关增韧的量。因此,已经为压电中的实际各向异性导出了裂缝重量函数。

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