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Stereographic analysis of grain boundary sliding in superplastic deformation of alumina-zirconia two phase ceramics

机译:氧化铝-氧化锆两相陶瓷超塑性变形中晶界滑动的立体学分析

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摘要

Grain boundary sliding during superplastic deformation has been investigated for fine-grained Al{sub}2O{sub}3-20%ZrO{sub}2 (3 mol% Y{sub}2O{sub}3 doped ZrO{sub}2) ceramics prepared with no additive in order to estimate the grain boundary sliding contribution to superplastic deformation for ceramic matrials. Large strains are obtained by compression tests at the temperature of 1400 and 1500℃ Grain boundary sliding is clearly found to take place during the superplastic deformation. The intragranular strain contribution to the total strain was estimated from the aspect ratio of the grains after deformation. The grain boundary sliding was measured by an imaginary scratch line method and a stereographic analysis method. The grain boundary sliding contribution to the total strain can be estimated from the results of the stereographic analysis method, and multiplication by a calibration factor which compensates for the difference between grain boundary sliding at the surface and at the interior of the specimen. The contribution of the Al{sub}2O{sub}3-20%ZrO{sub}2 ceramics is estimated to be about 40 - 60%, which increases gradually with strain rate.
机译:已经研究了细晶粒的Al {sub} 2O {sub} 3-20%ZrO {sub} 2(3 mol%Y {sub} 2O {sub} 3掺杂ZrO {sub} 2)的晶界滑动。为了估计晶界滑动对陶瓷材料超塑性变形的贡献,未添加添加剂的陶瓷。通过在1400和1500℃的温度下的压缩试验获得了较大的应变。在超塑性变形过程中,明显发现了晶界滑动。晶粒内应变对总应变的贡献是根据变形后晶粒的长径比来估算的。晶界滑动通过假想划痕线法和立体分析法测定。晶界滑动对总应变的贡献可以根据立体分析方法的结果进行估算,然后乘以校准因子,该补偿因子可以补偿试样表面和内部晶界滑动之间的差异。据估计,Al {sub} 2O {sub} 3-20%ZrO {sub} 2陶瓷的贡献约为40-60%,并随应变速率逐渐增加。

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