陶瓷中的电场诱导相变

G. Fantozzi, C. Olagnon, C. Lecuir, K. Liang, K. Gu
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引用次数: 1

摘要

已知:(1)介电材料的电学性能与力学性能有相似之处;(2)极化能可以通过相变耗散;(3)陶瓷在机械应力作用下或裂纹扩展时产生的相变增加了断裂韧性。报道了电场对含ZrO/ sub2 /(20%)的氧化铝(AI/sub 2/O/sub 3/)陶瓷结构的影响。结果表明:(a) ZrO/sub 2/从四边形转变为单片的比例(t- >m)取决于外加电场的振幅和持续时间,(b)相变对绝缘子的调节起主导作用,(c)烧结方式影响(t- >m)速率。所提出的结果将为调节机制,局部放电机制,闪络以及内应力对电介质耐压的作用提供原始见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electric field Induced phase transformation In ceramics
It is known that: (1) an analogy exists between the electrical and mechanical properties of dielectric materials, (2) the polarization energy can be dissipated via phase transitions, and (3) phase transformation produced in ceramics under mechanical stress or at the time of crack propagation, increases fracture toughness. The influence of an electric field on the structure of an alumina (AI/sub 2/O/sub 3/) ceramic, with ZrO/sub 2/ (20%) is reported. It is shown that: (a) the percentage of ZrO/sub 2/ undergoing phase transformation from tetragonal to monolithic (t-->m) depends on the amplitude and duration of the applied electric field, (b) the phase transformation plays a dominant role on the conditionning of the insulator, (c) the sintering method influences the (t-->m) rate. The results presented will provide original insights into the conditioning mechanism, partial discharge mechanism, flashover, and on the role of internal stresses on voltage withstand of dielecrics.
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