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Finite element analysis of the effect of non-ferroelectric second phases in Pb(Mg/sub 1/3/Nb/sub 2/3/)O/sub 3/

机译:有限元分析Pb(Mg / Sub 1/3 / sum 2/3 /)O / Sub 3 /的非铁电器第二阶段效应

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Non-ferroelectric second phases such as pores and pyrochlore usually exist in PbMg/sub 1/3/Nb/sub 2/3/O/sub 3/ (PMN) unless special production techniques are employed. A detailed 2D model was developed to assess the effects of these non-ferroelectric inclusions in terms of stress and electric field concentrations they create. Field induced anisotropy, and electric field dependence of elastic stiffness, dielectric permittivity and electrostrictive coefficients were included in the model where the material behavior was considered at T/sub max/ (zero hysterisis). Dielectric breakdown was also taken into account if the local electric field intensity exceeded an assumed dielectric strength. The results suggest that the electric and mechanical field concentrations depend on the geometry and alignment of the inclusions with respect to the applied field. Electric field concentration and depletion cause stresses up to 25 and 42 MPa, respectively. If dielectric breakdown occurred, it grew dendritically towards the electrodes and formed a region depleted of electric field in its surrounding. The results provide an insight to the mechanism of decreased performance of PMN due to the existence of nonferroelectric inclusions.
机译:除非采用特殊生产技术,否则非铁电第二阶段诸如孔和烧晶晶如孔和烧晶晶体通常存在于PBMG / Sub 1/3 / Nb / Sub 2/3 / O / Sub 3 /(PMN)中。开发了详细的2D模型,以评估这些非铁电夹杂物在其产生的应力和电场浓度方面的影响。领域诱导的各向异性,弹性刚度的电场依赖性,介电介电常数和电致伸缩系数被包括在T / Sum Max /(零呼吸症)中考虑材料行为的模型中。如果局部电场强度超过假定的介电强度,还考虑介电击穿。结果表明,电气和机械场浓度取决于夹杂物的几何形状和对准。电场浓度和耗尽分别导致高达25和42MPa的应力。如果发生介电击穿,则它朝向电极朝向电极成长并形成了在其周围的电场耗尽的区域。结果对PMN降低的机制介绍了由于存在非转移夹杂物而降低的PMN性能。

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