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Effect of Sintering Temperature on the Physical Properties and Microstructure of in-situ Nitrides Bonded MgAl_2O_4-C Refractories

机译:烧结温度对原位氮化物物理性质和微观结构的影响MgAl_2O_4-C耐火材料

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The in situ nitrides bonded MgAl_2O_4 refractories were prepared by using high quality fused spinel (MgAl_2O_4≥97%), natural flake graphite (C > 96%) and silicon powder (Si ≥98%) as raw materials and the liquid calcium lignosulfonate with a concentration of 1.25 g/ml was used as binder (4 wt%). The effect of sintering temperatures on physical properties and phase compositions were investigated. The results show that P-sialon and α-Si_3N_4 were formed in the samples sintered at 1400°C, 1450°C and 1500°C, and AlON and A1N were formed in the samples sintered at 1550°C. The sample that sintered at 1450°C exhibits the best bulk density and apparent porosity of 2.84 g/cm~3 and 14.73%, respectively, and the highest compressive strength.
机译:通过使用高质量的稠合尖晶石(MgAl_2O_4≥97%),天然薄片石墨(C> 96%)和硅粉(Si≥98%)作为原料和Lignosulfonate的液体氧化钙来制备原位氮化物粘合的MgAl_2O_4耐火材料。浓度为1.25g / ml用作粘合剂(4wt%)。研究了烧结温度对物理性质和相组合物的影响。结果表明,在1400℃,1450℃和1500℃下的样品中形成p-Sialon和α-Si_3N_4,在1550℃烧结的样品中形成Alon和A1N。在1450℃下烧结的样品显着分别为2.84g / cm〜3和14.73%的最佳堆积密度和表观孔隙率,以及最高的抗压强度。

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