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Oxidation Resistance and Mechanical Enhancement of Ferro-Silicon Nitride on Silica Sol Bonded SiC Castable

机译:二氧化硅溶胶粘结SiC浇注硅氧化铁氧化抗性与机械增强

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Silica sol bonded SiC castable have obvious advantages of slag resistance and thermal stress damage resistance. However, they are not widely used due to their weak oxidation resistance at high temperature. Ferro-silicon nitride is added to improve the oxidation resistance of SiC castable. The efficiency of SiC castable in the presence of different contents of ferro-silicon nitride was evaluated through sintered properties, isothermal oxidation behaviors and microstructural analysis. The results show that sample with 5wt% ferro-silicon nitride possessed good mechanical behavior after heat treatment due to its acceleration for the formation of SiC whiskers. At 1500 癈, Isothermal oxdation curve indicated that the oxidation progress performed two-stage model controlled by chemical reaction at the earlier period and diffusion at the later period. Sample with 5wt% ferro-silicon nitride present faster oxidation rate (kc) at the earlier stage versus the contrast sample (0.025 mg-cm~(-2)-min~(-1) vs 0.087 mg-cm~(-2)-min"), and slower oxidation rate (kd) at the later stage (0.145 mg-cm~(-2)-min~(-1) vs 0.137 mg-cm~(-2)-min~(-1)). After 470 min isothermal oxidation test, the weigh gain of sample with 0 wt% ferro-silicon nitride exceeded the sample with 5wt% ferro-silicon nitride.
机译:二氧化硅溶胶粘结的SiC浇注具有明显的熔渣性和热应力损伤性的优点。然而,由于它们在高温下耐氧化耐力弱,因此它们没有被广泛使用。加入铁硅氮化硅以改善SiC浇注的抗氧化性。通过烧结性能,等温氧化行为和微结构分析评估在不同含量的铁氮化硅含量存在下的SiC浇注的效率。结果表明,在热处理后,具有5wt%铁氮化硅的样品具有良好的机械行为,因为它为形成SiC晶须的加速而产生。在1500℃下,等温氧化曲线表明氧化进展在早期的时间内通过化学反应进行了两级模型,并在后期的扩散。具有5wt%铁氮化物的样品在较早阶段存在更快的氧化速率(KC)与造影剂(0.025mg-cm〜(-2)-min〜(-1)Vs 0.087 mg-cm〜(-2) - Min“),较晚阶段(0.145mg-cm〜(-2)-min〜(-1)vs 0.137mg-cm〜(-2)-min〜(-1)时慢氧化速率(kd) )。470分钟等温氧化试验后,用0wt%铁氮化物的样品的称重增益超过样品,其中5wt%的铁氮化硅。

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