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Phase transformation kinetic study and microstructure characterization of ball-milled m-ZrO2-10 mol% a-TiO2 by Rietveld method

机译:Rietveld法研究球磨m-ZrO2-10 mol%a-TiO2的相变动力学研究和微观结构表征

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High-energy ball milling of a monoclinic ZrO2-10 mol% anatase TiO2 mixture results in the formation of a nanocrystalline cubic ZrO2 polymorphic phase with equimolar fraction of the starting materials. The cubic phase is presumed to have formed from the m-ZrO2 solid solution based on the (001) plane of the m-ZrO2 phase. In the course of milling, the most dense (111) plane of the cubic lattice became parallel to the most dense ((1) over bar 11) plane of the monoclinic lattice due to an orientation effect. Annealing of a 12 h milled sample at 773, 873 and 973 K for 1 h results in almost complete transformation of the m-ZrO2 to the c-ZrO2 phase. At 1273 K annealing temperature (1 h), the nanocrystalline sample decomposed into individual starting phases. This suggests that the cubic phase is a metastable one and its stability depends on particle size as well as the working temperature. Formation of the cubic phase at such a low temperature using anatase TiO2 as a phase stabilizer has not been reported previously. The microstructures of the unmilled, all the ball-milled and the annealed samples have been characterized by employing Rietveld's X-ray powder structure refinement methodology. The particle size, root mean square (r.m.s.) lattice strain, lattice parameters, molar fraction, etc., of individual phases have been estimated from Rietveld analysis and are utilized to interpret the results. [References: 46]
机译:单斜晶ZrO2-10摩尔%锐钛矿型TiO2混合物的高能球磨导致形成等摩尔分数的原料的纳米晶立方ZrO2多晶相。推测立方相是基于m-ZrO2相的(001)面由m-ZrO2固溶体形成的。在铣削过程中,由于取向效应,立方晶格的最致密(111)平面变得平行于单斜晶格的最致密((1上方的棒1))平面。将经过12小时研磨的样品在773、873和973 K上退火1小时会导致m-ZrO2几乎完全转变为c-ZrO2相。在1273 K的退火温度(1 h)下,纳米晶体样品分解成各个起始相。这表明立方相是亚稳态的,其稳定性取决于粒度以及工作温度。以前没有报道使用锐钛矿型TiO 2作为相稳定剂在如此低温下形成立方相。通过采用Rietveld的X射线粉末结构细化方法,对未研磨,所有球磨和退火样品的微观结构进行了表征。通过Rietveld分析估算了各个相的粒度,均方根(r.m.s.)晶格应变,晶格参数,摩尔分数等,并将其用于解释结果。 [参考:46]

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