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Moire Interferometry Applied to Ferroelectric Ceramics

机译:莫尔干涉测量技术在铁电陶瓷中的应用

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摘要

This paper introduces how to in situ observe fracture behavior around a crack tip in ferroelectric ceramics under combined electromechanical loading by use of a moire interferometry technique. The deformation field induced by electric field and stress concentration near the crack tip in three-points bending experiments was measured. By analysing the moire interferometry images it is found that under a constant mechanical load, an electrical field has no effect on crack extension in the case that the directions of the poling, electric field and crack extension are perpendicular to each other. When the poling direction is parallel to the crack extension direction and perpendicular to the electric field, strain decreases faster than values predicted by the theoretical analysis as the distance away from the crack tip increases. In addition, as the electric field raises the strain near the crack tip increases, and the strain concentration phenomena becomes more significant.
机译:本文介绍了如何利用莫尔干涉测量技术在复合机电负载下原位观察铁电陶瓷裂纹尖端周围的断裂行为。在三点弯曲实验中,测量了由电场引起的变形场和裂纹尖端附近的应力集中。通过分析莫尔干涉测量图像,发现在恒定的机械负载下,如果极化,电场和裂纹扩展的方向彼此垂直,则电场对裂纹扩展没有影响。当极化方向平行于裂纹扩展方向并垂直于电场时,随着距裂纹尖端的距离增加,应变的减小速度快于理论分析所预测的值。另外,随着电场的升高,裂纹尖端附近的应变增加,并且应变集中现象变得更加明显。

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