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Modeling high-energy ball milling in the alumina-yttria system

机译:在氧化铝-氧化钇系统中模拟高能球磨

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Experimental results from high-energy ball milling of alumina-yttria powder mixtures have been analyzed with models collected from the literature. Depending on the milling conditions, either there is formation of an intermediate phase in the alumina-yttria system (yttrium aluminum perovskite, YAP), or the sample becomes mostly amorphous. Variations due to milling tool material can be accounted for by local models based on the Hertzian theory of elastic bodies, but the effects of changing mills are poorly accounted for by published models. Therefore, the concept of an impact frequency distribution over the energy spectrum is introduced as a tool for studying the characteristics of the mills. The pressure on the powder trapped between two colliding bodies has been found to be the factor deciding the outcome of the process. The threshold behavior of the system yields an amorphous structure for low pressures, and formation of YAP when impact pressures exceed the threshold value. (C)2002 Elsevier Science (USA). [References: 30]
机译:使用从文献中收集的模型分析了氧化铝-氧化钇粉末混合物的高能球磨实验结果。取决于研磨条件,要么在氧化铝-氧化钇体系中形成中间相(钇铝钛矿钙钛矿,YAP),要么样品变成非晶态。基于铣削刀具材料的变化可以由基于弹性体赫兹理论的局部模型来解决,但是铣床更换的影响很难由已发布的模型来解决。因此,引入能谱上的冲击频率分布的概念作为研究轧机特性的工具。发现困在两个碰撞体之间的粉末上的压力是决定该过程结果的因素。系统的阈值行为会产生低压的非晶态结构,当冲击压力超过阈值时会形成YAP。 (C)2002 Elsevier Science(美国)。 [参考:30]

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