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来自电弧炉粉尘的微晶玻璃材料。

Glass-ceramic materials from electric arc furnace dust.

作者信息

Kavouras P, Kehagias T, Tsilika I, Kaimakamis G, Chrissafis K, Kokkou S, Papadopoulos D, Karakostas Th

机构信息

Physics Department, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.

出版信息

J Hazard Mater. 2007 Jan 31;139(3):424-9. doi: 10.1016/j.jhazmat.2006.02.043. Epub 2006 May 22.

Abstract

Electric arc furnace dust (EAFD) was vitrified with SiO2, Na2CO3 and CaCO3 powders in an electric furnace at ambient atmosphere. Vitreous products were transformed into glass-ceramic materials by two-stage heat treatment, at temperatures determined by differential thermal analysis. Both vitreous and glass-ceramic materials were chemically stable. Wollastonite (CaSiO3) was separated from the parent matrix as the dominant crystalline phase, verified by X-ray diffraction analysis and energy dispersive spectrometry. Transmission electron microscopy revealed that wollastonite crystallizes mainly in its monoclinic form. Knoop microhardness was measured with the static indentation test method in all initial vitreous products and the microhardness values were in the region of 5.0-5.5 GPa. Devitrification resulted in glass-ceramic materials with microhardness values strongly dependent on the morphology and orientation of the separated crystal phase.

摘要

在环境气氛下,将电弧炉粉尘(EAFD)与二氧化硅、碳酸钠和碳酸钙粉末在电炉中进行玻璃化处理。通过差示热分析确定的温度,对玻璃态产物进行两阶段热处理,将其转化为微晶玻璃材料。玻璃态和微晶玻璃材料在化学上均稳定。通过X射线衍射分析和能谱分析证实,硅灰石(CaSiO₃)作为主要晶相从母体基质中分离出来。透射电子显微镜显示,硅灰石主要以单斜晶形式结晶。采用静态压痕试验方法对所有初始玻璃态产物测量努氏显微硬度,其值在5.0 - 5.5 GPa范围内。玻璃化转变产生的微晶玻璃材料,其显微硬度值强烈依赖于分离出的晶相的形态和取向。

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