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Synthesis of ZrO2-Nitride Composite Powder and Effect of Its Addition on Properties of Low Carbon Al2O3-C Refractories

机译:ZrO2-氮化物复合粉末的合成及其添加对低碳Al2O3-C耐火性能的影响

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Using zircon and activated carbon as raw materials,ZrO2-nitride composite powder was synthesized by carbothermal reduction and nitridation (CRN) in nitrogen atmosphere.The effect of ZrO2-nitride composite powder addition on thermal shock resistance (TSR) and oxidation resistance of the Al2O3-C refractories was compared by residual CMOR ratio after 1100°C-air quenching and the thickness of oxidation layer respectively.Phase compositions and microstructure of the Al2O3-C refractories were investigated by X-ray diffraction (XRD) and scanning electronic microscope (SEM) fitted with an energy-dispersive spectroscopy (EDS) analyzer.XRD results of ZrO2-nitride composite powder showed that the relative content of ZrO2 and nitride reach about 30% and 70%,respectively.The mainly phases of the nitride are:Zr7O8N4(30%),Si2N2O (20-30%),besides of them,some of ZrN(5%) and β-Si3N4(3%) were also obtained.TSR and oxidation resistance of Al2O3-C refractories can be improved obviously by the addition of the synthesized ZrO2-nitride composite powder.
机译:用锆和活性炭作为原料,通过氮气氛中的碳热还原和氮化(CRN)合成ZrO2-氮化物复合粉末。添加ZrO2-氮化物复合粉末的抗热冲击性(TSR)和Al2O3的抗氧化效应。通过X射线衍射(XRD)和扫描电子显微镜(SEM)研究了1100℃ - 空气淬火和氧化层的厚度和氧化层的厚度和氧化层的组合物和微观结构的耐用CMOR比进行比较。通过X射线衍射和扫描电子显微镜(SEM )拟合ZrO2-氮化物复合粉末的能量分散光谱(EDS)分析仪。ZrO2和氮化物的相对含量分别达到约30%和70%。氮化物的主要相是:Zr7O8N4(除了它们之外,30%),除了它们之外,还获得了一些ZrN(5%)和β-Si3N4(3%)。通过Al2O3-C耐火材料的抗氧化性能明显提高外加的 合成的ZrO2-氮化物复合粉末。

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