从金刚石浓缩尾矿中制备泡沫微晶玻璃

IF 2.7 Q1 MATERIALS SCIENCE, CERAMICS
O. Suvorova, N. Manakova, Andrey I Novikov, D. Makarov
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引用次数: 0

摘要

本文论证了利用俄罗斯阿尔汉格尔斯克地区罗蒙诺索夫矿床的金刚石浓缩尾矿获得建筑泡沫微晶玻璃的可能性。建立了尾矿粒度分布、进料温度、发泡剂添加量和氧化剂含量对进料发泡的影响。介绍了获得泡沫玻璃陶瓷材料的工艺条件。在1020–1050°C下发泡的最佳成分(尾矿50 wt.%、玻璃废料50 wt.%、SiC 0.5 wt.%和Fe2O3 1 wt.%)材料的规格如下:表观密度0.23–0.51 g/cm3,抗压强度0.58–2.40 MPa,吸水率(体积)8.7–19.0%。基于在干燥条件下使用时测量的性能组合,所获得的材料可以被认为是绝热泡沫材料。导热系数为0.060~0.066W/m·K。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Obtaining Foamed Glass-Ceramics from Diamond Concentration Tailings
The possibility of obtaining building foamed glass-ceramic using the diamond concentration tailings of the Lomonosov deposit in Arkhangelsk Region, Russia, is demonstrated here. The effect of the tailings’ particle size distribution, feed temperature, the addition of a foaming agent, and the content of oxidizer on the feed charge foaming is established. The process conditions for obtaining foamed glass-ceramic materials are described. The specifications of the materials with the optimal composition (tailings 50 wt.%, glass waste 50 wt.%, SiC 0.5 wt.%, Fe2O3 1 wt.%) foamed at 1020–1050 °C were as follows: apparent density 0.23–0.51 g/cm3, compression strength 0.58–2.40 MPa, water absorption (by volume) 8.7–19.0%. Based on the combination of the measured properties when used in dry conditions, the obtained materials can be considered heat-insulating foam materials. The thermal conductivity was 0.060–0.066 W/m·K.
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来源期刊
CiteScore
3.00
自引率
7.10%
发文量
66
审稿时长
10 weeks
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