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Fabrication of a Porous Ceramic Material Suitable for Cost-effective Thermal Insulation of Buildings

机译:适用于建筑物的经济高效隔热的多孔陶瓷材料的制造

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The domestication of cost-effective, green, and sustainable building materials is significant towards its massive adoption in the developing countries. The feasibility of developing porous ceramics for cost-effective thermal insulation of buildings was explored in this study using waste materials including granite shifting and sawdust as well as chemical reagents including water glass and sodium hydroxide. Granite shifting and sawdust were dried, processed into powdered form, milled and sieved. Samples of porous ceramics were formulated using varying percentages by weight of granite shifting and sawdust mixed with a constant percentage by weight of water glass and sodium hydroxide in three different cases. The homogenized powder of the formulated composition was uniaxially pressed at 10Mpa. The samples were dried and then sintered in a gas kiln at 8500C for 3 hours. The result revealed water absorption (21.1?56.5%), compressive strength (1.2?7.9Mpa), bulk density (1.44?1.81g/cm3), apparent porosity (38.1?81.3%), and thermal conductivity (0.13?0.54W/m.K). These results indicated that the obtained porous ceramics is a potential material for cost-effective thermal insulation of buildings where a suitable combination of thermal conductivity, porosity, and mechanical strength is required.
机译:在发展中国家的大规模采用中,对成本效益,绿色和可持续建筑材料的驯化是重要的。在本研究中探讨了在本研究中使用包括花岗岩移位和锯末以及包括水玻璃和氢氧化钠的化学试剂,探讨了建筑物的经济高效保温的可行性。将花岗岩移位和锯末干燥,加工成粉末形式,研磨和筛分。使用不同百分比的花岗岩换档和锯末与三种不同情况下用恒定百分比的水玻璃和氢氧化钠混合的花岗岩换档和锯末配制多孔陶瓷样品。在10MPa下单轴压制配制组合物的均化粉末。将样品干燥,然后在850℃的气体窑中烧结3小时。结果揭示了吸水率(21.1〜56.5%),抗压强度(1.2≤7.9MPa),堆积密度(1.44≤1.81g/ cm3),表观孔隙率(38.1?81.3%)和导热率(0.13≤0.54w/ MK)。这些结果表明,所获得的多孔陶瓷是一种用于成本效益的潜在材料,用于生产热导率,孔隙率和机械强度的合适组合。

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