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The Role of Interfaces in the High Temperature Deformation and Failure of Polycrystalline Alumina

机译:界面在多晶氧化铝高温变形和破坏中的作用

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Numerous studies on high temperature deformation of polycrystalline alumina in compression and bending have yielded stress exponents for deformation of n ~2, where ε ∝ σ~nrnand ε and a are the strain rate and stress, respectively. Since a stress exponent of ~2 is typical of superplastic metals, it was anticipated that alumina will exhibit large elongations to failure, in a manner similar to the large strains reported in compression. However, tensile testing of pure alumina has revealed that pure alumina fails prematurely due to extensive cavitation, so that the elongations to failure are typically on the order of only ~20%.rnThis report examines the role of interfaces in the high temperature deformation and failure of polycrystalline alumina, with a special emphasis on grain boundary mobility and energy. The reported experimental data will be compared with existing theoretical models, and additional factors not considered in theoretical models will be outlined. Furthermore, this report discusses strategies to enhance the tensile ductility of polycrystalline alumina.
机译:对多晶氧化铝在压缩和弯曲时的高温变形的大量研究得出了n〜2变形的应力指数,其中ε∝σn和ε和a分别为应变率和应力。由于超塑性金属的典型应力指数为〜2,因此可以预料,氧化铝将表现出较大的断裂伸长率,其方式类似于压缩中报道的大应变。但是,纯氧化铝的拉伸试验表明,纯氧化铝由于大量的空化而过早失效,因此断裂伸长率通常仅为〜20%左右。rn本报告考察了界面在高温变形和失效中的作用。多晶氧化铝的制备,特别着重于晶界迁移率和能量。将报告的实验数据与现有的理论模型进行比较,并将概述理论模型中未考虑的其他因素。此外,本报告讨论了增强多晶氧化铝拉伸延展性的策略。

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