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Cracks with surface charge in poled ferroelectrics

机译:极化铁电体中带有表面电荷的裂纹

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A solution is developed for a prismatic elliptical cavity inserted into an infinite, poled, ferroelectric body subjected to uniform mechanical and electrical loading at infinity consistent with planar fields. The surface of the cavity is also permitted to attract free charge in such a way that the electric field in the cavity remains uniform. The solution is used to develop the mechanical and electrical intensity factors at the tip of the crack obtained by allowing the minor axis of the ellipse to become very small. The energy release rate upon propagation of the crack is also derived. It is found that both the polarization of the ferroelectric and the free charge on the surface of the crack can have a very substantial effect on the magnitudes of both the intensity factors and the energy release rate. The reality of remanent polarization in common ferroelectrics means that it cannot be neglected in the fracture mechanics of such materials. Furthermore, it is likely that remanent polarization leads to free charge being attracted to crack surfaces, so consideration of the latter would also seem to be of importance in the fracture mechanics of ferroelectrics.
机译:针对棱柱形椭圆形腔的解决方案被开发出来,该椭圆形腔被插入到无限的,极化的铁电体中,该无限大的铁电体在与平面场一致的无穷大处经受均匀的机械和电负载。还允许腔的表面以使腔中的电场保持均匀的方式吸引自由电荷。该解决方案用于开发通过使椭圆的短轴变得非常小而获得的裂纹尖端处的机械强度和电气强度因子。还得出了裂纹扩展时的能量释放速率。已经发现,铁电体的极化和裂纹表面上的自由电荷都可以对强度因子和能量释放速率的大小产生很大的影响。普通铁电体中剩余极化的存在意味着在这种材料的断裂力学中不能忽略它。此外,剩余极化很可能导致自由电荷被吸引到裂纹表面,因此考虑裂纹在铁电体的断裂力学中似乎也很重要。

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