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SYNTHESIS AND NOVEL APPLICATION OF NANOMATERIALS IN TUNGSTATE, TITAN1A AND SILICON NITRIDE SYSTEMS

机译:钨酸锡,钛1A和氮化硅体系中纳米材料的合成及新施用

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This paper summarizes some recent advances made in synthesis and application of nanomaterials in tungstate, titania and silicon nitride systems. Firstly, the room temperature acidic precipitation and ageing process of tungsten oxide dihydrate grains are presented. Fourier transform infrared spectroscopy studies have shown that structural stability of Freedman type grains can be altered by presence of Li~+ and NH_4~+ ions. Water molecules and OH~- groups present in structure play an important role in ion insertion process during ageing. As regards titania system a mechanochemical coating process is highlighted. Afterwards, a study about silicon nitride ceramics with well known properties as low density, high strength and toughness is presented. As an alternative way to improve the mechanical and thermal properties of silicon nitride matrix, we performed the preparation and examination of nano-crystalline carbon added silicon nitride ceramic matrix composites.
机译:本文总结了钨酸锡,二氧化钛和氮化硅系统中纳米材料的合成和应用的一些最新进展。首先,介绍了室温酸性沉淀和钨氧化物二水合物晶粒的衰老过程。傅里叶变换红外光谱研究表明,通过Li +和NH_4〜+离子的存在,可以改变Freedman型晶粒的结构稳定性。在结构期间,结构中存在的水分子和oh〜 - 组在离子插入过程中起重要作用。关于二氧化钛系统,突出了机械化学涂层过程。然后,提出了关于氮化硅陶瓷的研究,具有众所周知的特性,作为低密度,高强度和韧性。作为改善氮化硅基质的机械和热性质的替代方法,我们进行了纳米结晶碳添加的氮化硅陶瓷基复合材料的制备和检查。

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