MICROWAVE MANUFACTURE OF GLASS FOAM BY COMBINED USE OF GRAPHITE AND CALCIUM CARBONATE AS FOAMING AGENTS

L. Paunescu, S. Axinte, M. Drăgoescu, B. Păunescu, F. Cosmulescu
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Abstract

The paper presents experimental results obtained in the manufacturing process of high-strength glass foam by combined use of two solid foaming agents (calcium carbonate and graphite) in variable weight ratios. The originality of the work is applying the unconventional microwave heating method, unlike the conventional techniques currently used in similar industrial processes. The optimal experimental variant, composed of 89.1 % glass waste, 0.9% calcium carbonate, 1 % graphite and other additives, was sintered at 828 ºC with a very low energy consumption (0.73 kWh/kg). The main characteristics of the optimal product were apparent density of 0.39 g/cm3, thermal conductivity of 0.088 W/m·K and compressive strength of 3.6 MPa, being usable in fields that requires resistance to mechanical stress and relatively difficult environmental conditions.
石墨和碳酸钙复合发泡剂微波制备玻璃泡沫
本文介绍了两种固体发泡剂(碳酸钙和石墨)以变重量比联合使用制备高强度玻璃泡沫的实验结果。这项工作的独创性在于应用了非常规的微波加热方法,这与目前在类似工业过程中使用的传统技术不同。最佳的实验变异体由89.1%的玻璃废料、0.9%的碳酸钙、1%的石墨和其他添加剂组成,在828℃下烧结,能耗极低(0.73 kWh/kg)。最优产品的主要特性是表观密度为0.39 g/cm3,导热系数为0.088 W/m·K,抗压强度为3.6 MPa,可用于需要抗机械应力和相对恶劣环境条件的领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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