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High temperature reactions between Si3N4 bonded SiC materials and Cu, Cu2O and matte

机译:Si3N4粘结的SiC材料和Cu,Cu2O和哑光之间的高温反应

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摘要

Si3N4 bonded SiC (Si3N4-SiC) is a conventional refractory material and has broad applications. In the present study, Si3N4-SiC refractory materials were systematically investigated in the copper-making environment. Si3N4SiC was reacted with Cu, Cu2O, industrial matte, Cu2S and FeS melts at 1200 degrees C in argon gas atmosphere, and all samples were directly quenched in water after the experiments. Phase changes and compositions of the phases were measured by electron probe X-ray microanalysis. The present investigations demonstrate that Cu and Cu2S do not react with Si3N4-SiC at high temperatures and the wettability between this material and the melts is low. However, significant reactions occur between Si3N4-SiC and Cu2O, industrial matte and FeS. The results imply that Si3N4-SiC material has limited oxidation-resistance and can only be used under reducing conditions.
机译:Si3N4键合SiC(Si3N4-SiC)是一种常规耐火材料,具有广泛的应用。在本研究中,在铜制环境中系统地研究了Si3N4-SiC耐火材料。将Si3N4SIC与Cu,Cu 2 O,工业哑光,Cu2S和FE反应,在氩气气氛中在1200℃下熔化,并且在实验后,所有样品在水中直接淬灭。通过电子探针X射线微基分析测量相的相变和组合物。本研究表明,Cu和Cu2在高温下不会与Si3N4-SiC反应,并且该材料与熔体之间的润湿性低。然而,在Si3N4-SiC和Cu2O,工业哑光和FE之间发生重大反应。结果意味着Si3N4-SiC材料具有有限的抗氧化性,并且只能在还原条件下使用。

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