利用铝硅酸玻璃基废料回收多孔玻璃的非常规制造技术

S. Axinte, L. Paunescu, M. Drăgoescu, F. Cosmulescu
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引用次数: 3

摘要

本文以玻璃废料(钠石灰玻璃和卤素灯泡玻璃)、粉煤灰和碳化硅为发泡剂,在950℃以上的温度下,通过烧结/发泡的方法,实验制备了具有优异物理、机械和微观结构特性的多孔玻璃。论文的独创性在于使用微波加热,可以实现低比能耗(低于1kWh/kg)。最佳实验变异体的主要特性是:表观密度为0.29g/ cm3,导热系数为0.072W/m·K,抗压强度为2.4MPa,适合作为建筑保温材料使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonconventional manufacture technique of cellular glass from recycled aluminosilicate glass-based waste
The paper aimed to experimentally produce by sintering/foaming at over 950ºC a cellular glass with excellent physical, mechanical and microstructural characteristics using glass wastes (soda-lime glass and halogen lamps bulb glass), coal ash and silicon carbide as a foaming agent. The paper originality consists in the use of microwave heating, which allows the achievement of low specific energy consumptions (below 1kWh/kg). The main characteristics of the best experimental variant were: apparent density of 0.29g/cm 3 , thermal conductivity of 0.072W/m·K and compressive strength of 2.4MPa being suitable for the use of the product as a thermal insulating material in construction.
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