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首页> 外文期刊>Journal of Materials Science >Microstructure and properties of alumina-SiC nanocomposites prepared from ultrafine powders
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Microstructure and properties of alumina-SiC nanocomposites prepared from ultrafine powders

机译:超细粉末制备的氧化铝-SiC纳米复合材料的微观结构和性能

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Alumina-Silicon Carbide nanocomposites were produced and studied under different aspects: characteristics of the starting materials, processing, microstructure and mechanical properties. The raw materials were two kinds of fine SiC powders (30 and 45 nm) and two Al2O3 powders (60 and 140 nm). Different compositions (amounts of SiC in the range 0.5-5 vol%) were performed and the characteristics of the resulting materials compared. The oxygen enrichment in SiC nanopowder due to specific powder treatments was controlled, in order to optimize powder processing routes. Densification tests of Al2O3-SiC powder mixtures were performed both by pressureless sintering and hot pressing route. The addition of SiC reduced the densification rate and favoured a refinement of the matrix. Improvement of mechanical properties over monolithic alumina was obtained in composites with the 45 nm SiC. The study pointed out that the critical factor for the success of these materials is the choice of the raw SiC powders in terms of grain size and state of agglomeration. The addition of this ultrafine SiC strongly affected the microstructural evolution, even at low volumetric fractions. The results do not substantiate any remarkable effect by dispersoids in the tested nanosize range. (C) 2002 Kluwer Academic Publishers. [References: 27]
机译:氧化铝-碳化硅纳米复合材料的生产和研究涉及以下方面:原材料的特性,加工,微观结构和机械性能。原材料是两种SiC细粉(30和45 nm)和两种Al2O3粉(60和140 nm)。进行了不同的组成(SiC的量在0.5-5vol%的范围内),并且比较了所得材料的特性。为了优化粉末加工路线,控制了由于特定粉末处理而导致的SiC纳米粉中氧的富集。通过无压烧结和热压工艺对Al2O3-SiC粉末混合物进行了致密化测试。 SiC的添加降低了致密化速率并有利于基质的细化。在具有45 nm SiC的复合材料中,机械性能优于整体氧化铝。研究指出,这些材料成功的关键因素是从晶粒尺寸和团聚状态的角度选择碳化硅原料。即使在低体积分数下,这种超细SiC的加入也极大地影响了微观结构的演变。结果并不能证明分散的类固醇在测试的纳米尺寸范围内有任何显着效果。 (C)2002 Kluwer学术出版社。 [参考:27]

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