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首页> 外文期刊>Journal of the European Ceramic Society >Ceramic matrix composites in the alumina/5-30 vol.% YAG system
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Ceramic matrix composites in the alumina/5-30 vol.% YAG system

机译:氧化铝/ 5-30%(体积)YAG体系中的陶瓷基复合材料

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The preparation technique of the particulate composite materials in the alumina/YAG system was elaborated. Within alumina particles suspension yttria precursor was precipitated with ammonium carbonate. Drying and calcination at 600 ° C resulted in the mixture of alumina and yttria particles, the latter being much finer than alumina particles. This mixture was additionally homogenized by short attrition milling in an aqueous suspension. Sintering of such powders results in the materials composed of YAG inclusions of sizes smaller than shown by alumina grains and evenly distributed within the matrix. YAG particles result from the reaction of Y_2O_3 with Al_2O_3 during heat treatment. YAG inclusions limit effectively grain growth of the alumina matrix. Hardness, fracture toughness, strength, Young modulus and wear susceptibility of composites and pure alumina were measured. Composites show higher hardness and in some cases higher fracture toughness and wear resistance than pure alumina polycrystals.
机译:阐述了氧化铝/ YAG体系中颗粒状复合材料的制备技术。在氧化铝颗粒中,悬浮的氧化钇前体用碳酸铵沉淀。在600℃下干燥和煅烧得到氧化铝和氧化钇颗粒的混合物,氧化钇颗粒比氧化铝颗粒细得多。该混合物另外通过在水悬浮液中的短磨研磨而均质化。这些粉末的烧结导致由YAG夹杂物组成的材料,其尺寸小于氧化铝颗粒所示的尺寸,并均匀地分布在基体中。 YAG颗粒是由热处理期间Y_2O_3与Al_2O_3的反应产生的。 YAG夹杂物有效地限制了氧化铝基体的晶粒长大。测量了复合材料和纯氧化铝的硬度,断裂韧性,强度,杨氏模量和磨损敏感性。与纯氧化铝多晶相比,复合材料具有更高的硬度,在某些情况下还具有更高的断裂韧性和耐磨性。

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