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In Situ Catalytic Synthesis of Si3N4 Nanowhiskers Reinforced SiC Refractories and Their High-Temperature Properties

机译:原位催化合成Si3N4纳米须须增强SiC耐火材料及其高温性能

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Silicon nitride (Si3N4)-bonded silicon carbide (SiC) refractory (Si3N4-SiC) is one of the most important nonoxide refractories, but its mechanical properties still suffer from the residual Si. Herein, we report that the nitridation of Si and properties of Si3N4-SiC refractories can be improved by in-situ formed CoOx catalysts. The room-temperature modulus of rupture (MOR), high-temperature MOR, thermal shock resistance, and oxidation resistance of as-prepared Si3N4(w)-SiC refractories with catalysts were investigated. The results showed that CoOx catalysts enhanced the nitridation of Si powders and promoted the formation of Si3N4 whiskers. The high-temperature MOR at 1573 K of as-prepared refractories was improved by 30%, compared with samples without catalysts. Moreover, the thermal shock resistance and oxidation resistance of the former was remarkably higher than that of the latter. The improvement was attributed to in-situ formation of Si3N4 whiskers network structure in the samples due to the catalytic effects of CoOx catalysts.
机译:氮化硅(Si3N4) - 粘合的碳化硅(SiC)耐火(Si3N4-SiC)是最重要的非氧化物耐火材料之一,但其机械性能仍然患有残留的Si。在此,我们报告说,通过原位成分的COOO催化剂可以改善Si和Si和性质的氮化和性质。研究了采用催化剂的制备的Si3N4(W)-SIC耐火材料的高温下破裂(Mor),高温莫,耐热抗冲击性和抗抗氧化耐抗抗抗催化剂。结果表明,CoOX催化剂增强了Si粉末的氮化并促进了Si3N4晶须的形成。与没有催化剂的样品相比,在1573 k的耐火材料中的高温Mor提高了30%。此外,前者的热抗冲击性和抗氧化性显着高于后者。由于CoOX催化剂的催化作用,改善归因于样品中的Si3N4晶须网络结构的原位形成。

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