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首页> 外文期刊>CERAMICS INTERNATIONAL >Preparation of in-situ TiO_2/O'-Sialon multiphase ceramics by selective-oxidation
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Preparation of in-situ TiO_2/O'-Sialon multiphase ceramics by selective-oxidation

机译:选择性氧化法制备原位TiO_2 / O'-Sialon多相陶瓷

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On the basis of thermodynamic and thermal analysis, in-situ TiO_2/O'-Sialon multiphase ceramics were prepared from TiN/O'-Sialon materials by selective-oxidation at 800-1000 deg C in air. The samples were characterized by XRD and EPMA. Selective-oxidation kinetics and effect of partial pressure of oxygen on oxidation process were studied. The results indicate that the increase of oxidation temperature and partial pressure of oxygen in the atmosphere accelerates the selective-oxidation of the materials. Logarithm rule, i.e., DELTA m/A = k log t + C can describe the selective-oxidation process perfectly with an apparent activation energy of 56.1 kJ/mol. There is no protective scale formed on the surface of the materials and diffusion of gas through gradually closed pores is believed to be the rate-limiting step.
机译:在热力学和热分析的基础上,以TiN / O'-Sialon材料在空气中800-1000℃选择性氧化制备了原位TiO_2 / O'-Sialon多相陶瓷。通过XRD和EPMA对样品进行表征。研究了选择性氧化动力学和氧分压对氧化过程的影响。结果表明,大气中氧的氧化温度和分压的升高促进了材料的选择性氧化。对数法则即DELTA m / A = k log t + C可以以56.1 kJ / mol的表观活化能完美地描述选择性氧化过程。在材料的表面上没有形成保护层,并且气体通过逐渐闭合的孔的扩散被认为是限速步骤。

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