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Studies on the combined effects of titania and silicon carbide on the phase developments and properties of carbon-clay based ceramic composite

机译:二氧化钛和碳化硅对碳粘土基陶瓷复合材料相发展和性能的影响研究

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Effects of titania (TiO_(2)) and silicon carbide (SiC) on phase development and physico-mechanical properties of mullite-carbon were investigated. Powdered clay, kaolinite and graphite of predetermined compositions were blended with additives using ball mill for 3 h at 60 rev/min. Samples were produced by uniaxial compression and sintered between 1400°C and 1600°C for 1 h. They were characterized for various properties, phases developed and microstructural features. The addition of TiO_(2) and SiC in the sample lead to the formation of TiC in the sample at 1400°C and 1600°C. This takes place through high-temperature solid-state reaction (reaction sintering) of TiO_(2) and SiC. This also contributes to the reduction in the apparent porosity of the sample with increased sintering temperature. The presence of titania in the sample does not favour the stability of anorthite beyond 1400°C. The formation of 50.6% mullite in the sample at 1500°C made it have the highest cold crushing strength and absorbed energy. Young’s modulus of the sample increased with increased sintering temperature. The sample sintered at 1500°C is considered optimum.
机译:研究了二氧化钛(TiO_(2))和碳化硅(SiC)对莫来石碳相发展和物理力学性能的影响。使用球磨机将预定组成的粉末状粘土,高岭石和石墨与添加剂混合,以60转/分钟的速度搅拌3小时。通过单轴压缩制备样品,并在1400°C和1600°C之间烧结1小时。他们被表征为各种性质,发展的阶段和微观结构特征。在样品中添加TiO_(2)和SiC导致在1400°C和1600°C的样品中形成TiC。这是通过TiO_(2)和SiC的高温固态反应(反应烧结)而发生的。随着烧结温度的升高,这也有助于降低样品的表观孔隙率。样品中二氧化钛的存在不利于钙长石在1400°C以上的稳定性。样品在1500°C下形成50.6%的莫来石,使其具有最高的抗碎强度和吸收能。样品的杨氏模量随烧结温度的升高而增加。在1500℃下烧结的样品被认为是最佳的。

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