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首页> 外文期刊>Journal of the European Ceramic Society >A kinetic study of the quartz-cristobalite phase transition
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A kinetic study of the quartz-cristobalite phase transition

机译:石英-方石英相变的动力学研究

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Cristobalite is a common silicapolymorph in ceramics, as it can crystallize in SKVrich systems during high temperature processes. Its occurrence in final traditional ceramic bodies remarkably affects their thermal expansion, thus playing an important role in the shrinkage upon cooling. The quartz-cristobalite transformation kinetics is investigated by in-situ isothermal X-ray powder diffraction experiments and then correlated to the average particle size {{d)) of the starting quartz using a model here developed. An Avrami-like rate equation, i.e. a(t) = 1 — exp(— k x t)", in which (he n-term is assumed to account for the dependence on the average particle size, has provided the best fitting of theoretical to experimental data, yielding activation energy values that range from 181 to 234kJmol~(-1), and exponential M-coefficients from 0.9 to 1.5. Ex-situ observations have demonstrated that the formation of cristobalite from quartz after 50 min, 2,4 and 6 h at 1200 and 1300 °C, exhibits a remarkable dependence on (d) of quartz, showing comparable behaviours in the case of {d) equal to 15.8 and 28.4 μm, but significant differences for (d) of 4.1 μm. The formation of cristobalite is boosted remarkably at temperature higher than 1200 °C, with an increase by weight even of 500%, with respect to its content at lower temperature. The method of sample preparation (dry powder, wet powder and tablet of compressed dry powder) seems to influence the results only at temperature > 1200 °C and in the case of fine powder.
机译:方石英是陶瓷中常见的二氧化硅多晶型物,因为它可以在高温过程中在SKVrich系统中结晶。它在最终的传统陶瓷体中的出现会显着影响其热膨胀,因此在冷却时的收缩中起着重要作用。通过原位等温X射线粉末衍射实验研究了石英-方石英的转变动力学,然后使用此处开发的模型将其与起始石英的平均粒径({d))相关联。类Avrami速率方程,即a(t)= 1_exp(-kxt)”,其中(假设n项考虑了对平均粒径的依赖性),提供了理论上的最佳拟合实验数据表明,活化能值范围为181至234kJmol〜(-1),指数M系数范围为0.9至1.5,异位观察表明,石英在50分钟,2,4和10分钟后形成方石英。在1200和1300°C下6 h表现出对石英(d)的显着依赖性,在{d)等于15.8和28.4μm的情况下表现出可比的行为,但对于(d)4.1μm则有显着差异。方晶石在高于1200°C的温度下显着增强,相对于其在较低温度下的含量,甚至增加了500%的重量样品制备方法(干粉,湿粉和压缩干粉片)似乎仅在温度> 1200°C且在f的情况下才影响结果我的粉末。

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