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Liquid phase sintered SiC ceramics from starting materials of different grade

机译:不同等级原材料的液相烧结SiC陶瓷

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Possibility of high performance ceramics manufactured from commercial SiC powder of technical grade has been shown. Sintering behavior and microstructure formation under conditions of liquid phase sintering (LPS) with oxynitride sintering aids (A1N-Y_2O_3) of three SiC-based compositions have been investigated. Two of the compositions were based on Alcoa 1000 SiC powder of technical grade, and the third one, which was used as a reference, was based on H.C. Starck UF-15 fine grade commercial powder. Milling process used for Alcoa 1000 SiC powder granulometry improvement has been investigated in detail, while chemical treatment of milled SiC powders has been used for pick-up impurities removal. Dilatometric experiments showed that SiC powder of technical grade after appropriate treatment exhibits sinterability comparable with the fine grade SiC. Microstructural investigations performed on sintered samples showed that the final microstructure of the Alcoa 1000 SiC based materials was practically identical with the H.C. Starck SiC based reference ones. Preliminary investigations of hardness and fracture toughness were carried out revealing excellent results for the materials produced from cheaper, nationally produced starting powder.
机译:已经显示了由工业级的工业级SiC粉末制造的高性能陶瓷的可能性。研究了三种基于SiC的氧氮化物烧结助剂(AlN-Y_2O_3)在液相烧结(LPS)条件下的烧结行为和微观结构的形成。两种成分是基于工业等级的Alcoa 1000 SiC粉末,而第三种成分是作为参考,是基于H.C。斯达克UF-15优质商业粉末。详细研究了用于改善Alcoa 1000 SiC粉末粒度的研磨工艺,同时对研磨的SiC粉进行化学处理以去除杂质。膨胀试验表明,经过适当处理的工业级SiC粉末具有与细级SiC相当的烧结性。对烧结样品进行的微观结构研究表明,Alcoa 1000 SiC基材料的最终微观结构实际上与H.C.相同。基于Starck SiC的参考材料。进行了初步的硬度和断裂韧性研究,结果表明该材料由廉价的国家生产的起始粉末生产而成。

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