Spheroidization of silica powders by radio frequency inductively coupled plasma with Ar–H2 and Ar–N2 as the sheath gases at atmospheric pressure

IF 7.2 2区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Lin Li, Guo-hua Ni, Qi-jia Guo, Qi-fu Lin, Peng Zhao, Jun-li Cheng
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引用次数: 8

Abstract

Amorphous spherical silica powders were prepared by inductively coupled thermal plasma treatment at a radio frequency of 36.2 MHz. The effects of the added content of hydrogen and nitrogen into argon (serving as the sheath gas), as well as the carrier gas flow rate, on the spheroidization rate of silica powders, were investigated. The prepared silica powders before and after plasma treatment were examined by scanning electron microscopy, X-ray diffraction, and laser granulometric analysis. Results indicated that the average size of the silica particles increased, and the transformation of crystals into the amorphous state occurred after plasma treatment. Discharge image processing was employed to analyze the effect of the plasma temperature field on the spheroidization rate. The spheroidization rate of the silica powder increased with the increase of the hydrogen content in the sheath gas. On the other hand, the spheroidization rate of the silica power first increased and then decreased with the increase of the nitrogen content in the sheath gas. Moreover, the amorphous content increased with the increase of the spheroidization rate of the silica powder.

以Ar-H2和Ar-N2为鞘层气体的射频电感耦合等离子体在常压下球化二氧化硅粉末
采用感应耦合热等离子体处理技术,在36.2 MHz射频下制备了非晶球形二氧化硅粉末。研究了氩气(作为护套气)中氢气和氮气的添加量以及载气流量对硅粉球化率的影响。采用扫描电镜、x射线衍射、激光粒度分析等方法对等离子体处理前后制备的硅粉进行检测。结果表明:等离子体处理后,二氧化硅颗粒的平均尺寸增大,晶体向非晶态转变;采用放电图像处理技术分析了等离子体温度场对球化率的影响。随着护套气中氢含量的增加,硅粉的球化率增加。另一方面,随着鞘气中氮含量的增加,二氧化硅粉的球化率先升高后降低。非晶含量随硅粉球化率的增加而增加。
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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来源期刊
CiteScore
9.30
自引率
16.70%
发文量
205
审稿时长
2 months
期刊介绍: International Journal of Minerals, Metallurgy and Materials (Formerly known as Journal of University of Science and Technology Beijing, Mineral, Metallurgy, Material) provides an international medium for the publication of theoretical and experimental studies related to the fields of Minerals, Metallurgy and Materials. Papers dealing with minerals processing, mining, mine safety, environmental pollution and protection of mines, process metallurgy, metallurgical physical chemistry, structure and physical properties of materials, corrosion and resistance of materials, are viewed as suitable for publication.
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