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首页> 外文期刊>Journal of Materials Science >Transient creep associated with grain boundary sliding in fine-grained single-phase Al2O3
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Transient creep associated with grain boundary sliding in fine-grained single-phase Al2O3

机译:细晶单相Al2O3中与晶界滑动相关的瞬态蠕变

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Transient creep data for high-purity polycrystalline alumina are examined at the testing temperature of 1150-1250 degrees C. The data are analysed in terms of the effect of stress and temperature on the extent of transient time and strain. In order to explain the observed transient creep, a time function of creep strain is proposed from a two-dimensional model based on grain boundary sliding. The grain boundary sliding is assumed to take place by the glide of grain boundary dislocations accommodated by dislocation climb in the neighboring grain boundaries. The time function for a creep strain epsilon obtained from the model is given in a form epsilon = a(1)t + a(2)(1 - exp(- a(3)t)) which is similar to the previous empirical formula describing the experimental creep curves in metallic alloys. The model predicts that the transient creep strain ET is approximately proportional to and the extent of transient creep time t(T) is inversely proportional to flow stress. The prediction is consistent with the experimental data in high-purity, fine-grained alumina at temperatures between 1150 and 1250 degrees C. (C) 1998 Kluwer Academic Publishers. [References: 51]
机译:在1150-1250摄氏度的测试温度下检查了高纯度多晶氧化铝的瞬态蠕变数据。根据应力和温度对瞬态时间和应变程度的影响,对数据进行了分析。为了解释观察到的瞬时蠕变,从基于晶界滑动的二维模型提出了蠕变应变的时间函数。假定晶界滑动是由于晶界位错的滑移而发生的,该滑移是由在相邻晶界中的位错爬升所容纳的。从模型中获得的蠕变应变epsilon的时间函数以epsilon = a(1)t + a(2)(1-exp(-a(3)t))的形式给出,类似于先前的经验公式描述金属合金的实验蠕变曲线。该模型预测瞬态蠕变应变ET大约与流变应力成正比,瞬态蠕变时间t(T)的范围与流应力成反比。该预测与在1150和1250摄氏度之间的温度下高纯度细晶粒氧化铝中的实验数据一致。(C)1998 Kluwer Academic Publishers。 [参考:51]

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