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Preparation of lightweight high-strength thermal insulation and decoration integration porous ceramics using red mud

机译:制备轻质高强度热集成多孔隔热和装饰陶瓷用赤泥

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摘要

Porous ceramics with lightweight, high strength, thermal insulation, and decoration integration were prepared using red mud, construction waste, polished tile waste, and kaolin as raw materials. The influences of the content of red mud, sintering temperature, and blowing agent on the microstructure, mechanical, and thermal properties of porous ceramic were investigated. According to bulk density, pore morphology, compressive strength, and thermal conductivity, the optimum preparation condition of porous ceramic was determined after selecting the raw materials formulations and process parameters. Multi-functional wall insulation materials have been prepared when the content of red mud was 40%, blowing agent was 3%, and sintering temperature was 1080 degrees C. The bulk density, porosity, compressive strength, thermal conductivity, and softening temperature of porous ceramics were 0.25 g/cm(3), 72.15%, 7.26 MPa, 0.058 W/(m K), and 1160 degrees C respectively. Their corresponding influence mechanisms of pore structure on mechanical and thermal properties were discussed in detail. It was found from the section images of pore morphology that pore distribution and size were significantly uniform in porous ceramic.
机译:多孔陶瓷与轻质、高强度、保温、装饰一体化准备使用红泥,建筑垃圾,抛光砖废料和高岭土为原料。赤泥的含量的影响,烧结温度,和发泡剂微观结构、机械和热研究了多孔陶瓷的性质。根据体积密度,孔隙形态、抗压强度和热导率,多孔的最佳制备条件陶瓷是在选择原始的决定材料配方和工艺参数。多功能墙体保温材料准备当赤泥的内容40%,发泡剂是3%,烧结温度是1080度c .容重,孔隙度、抗压强度、热导电率,多孔的软化温度陶瓷是0.25克/厘米(3),72.15%,7.26 MPa,0.058 W / (m K),分别为1160摄氏度。相应的孔隙的影响机制结构力学和热性能详细讨论了。部分的孔隙形态学图像孔隙明显均匀分布和大小在多孔陶瓷。

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