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The estimation parameter of nanoceramics crystalline structure deviation from thermodynamically equilibrium state

机译:纳米陶瓷晶体结构偏离热力学平衡态的估计参数

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Using XRD techniques the correlations of the relative crystallite microstrains (RCM) with apparent crystallite sizes (ACS) for zirconia ceramic nanopowders, their green compacts pressed under different power of ultrasound action, and nanostructured ceramics sintered from them at various temperatures were analyzed. It was shown, that for all the samples the RCM values are inversely proportional to magnitudes of ACS with proportionality coefficient k, which is constant with high precision for the same material in equilibrium state. Physically coefficient k is a value of ACS actual change /spl Delta/d/sub ACS/ under microstresses action of crystallite having the certain defective substructure in a material existing in a stable state. The equation for coefficient k as a quantity of actual change of the ACS under microstrains action was offered. The difference between the coefficient k for ceramics sintered at lower temperatures and its statistical average value for ceramics sintered at optimal temperature reflects a deviation degree of the examined matter structure from thermodynamically equilibrium state. This deviation can be an estimation parameter of ceramics processing efficiency or compliance of technological conditions with optimal ones. The modulus of | k /spl Delta/d/sub ACS/ | was minimal for the structural zirconia ceramics sintered at optimum temperature and having the maximum mechanical characteristics.
机译:使用XRD技术,分析了氧化锆陶瓷纳米粉体的相对微晶微应变(RCM)与表观微晶尺寸(ACS),在不同超声作用下压制的生坯以及在不同温度下烧结而成的纳米结构陶瓷的相关性。结果表明,对于所有样品,RCM值与比例系数为k的ACS的大小成反比,对于处于平衡状态的相同材料,该值在高精度下是恒定的。物理上,系数k是在处于稳定状态的材料中具有一定缺陷子结构的微晶作用下的ACS实际变化/ spl Delta / d / sub ACS /的值。给出了系数k作为微应变作用下ACS实际变化量的方程。在较低温度下烧结的陶瓷的系数k与在最佳温度下烧结的陶瓷的统计平均值之间的差异反映了被检查物质结构与热力学平衡状态的偏离程度。该偏差可以是陶瓷加工效率的估计参数,也可以是技术条件与最佳条件相符的参数。 |的模数k / spl Delta / d / sub ACS / |对于在最佳温度下烧结并具有最大机械特性的结构氧化锆陶瓷而言,其最小限度。

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