镁热自蔓延法制备B_(4)C微粉  被引量:9

Preparation of Boron Carbide by Magnesium Reducing-SHS

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作  者:张廷安[1] 豆志河[1] 杨欢[1] 丁前丽[1] 

机构地区:[1]东北大学材料与冶金学院,辽宁沈阳110004

出  处:《东北大学学报(自然科学版)》2003年第10期935-938,共4页Journal of Northeastern University(Natural Science)

基  金:辽宁省博士启动基金资助项目(9910300402).

摘  要:利用自蔓延制粉技术过程简单、纯度高、粒度小等优点,以B2O3、Mg粉和C为原料制备B4C粉末·通过对B2O3 Mg C反应体系的绝热温度计算,确定该体系自蔓延反应进行的可行性·通过X射线衍射分析推测其反应机理·由扫描电镜分析知B4C晶粒细小,由电子衍射图谱知B4C为发育完整的单晶,但是有发育不完整的多晶存在·由光谱分析知B4C的纯度不低于98%,而容量分析结果表明B4C的纯度偏低·It was suggested that B_4C micropowder would be produced by self-propagating high-temperature synthesis(SHS),with taking B_4O and C raw materials and Mg powder as reducing agent,which has many advantages such as simple process,high purity and fine granularity of product. The adiabatic temperature of the B_2O_3-Mg-C reaction system was calculated in order to verify the feasibility of the SHS reaction. The results of X-ray diffraction analysis of the products show that B_4C will be gained through SHS and there is little C in the product. It is found that the B_4C grain is very fine by SEM,and it is observed that in B_4C powder the single crystal is fully growing together with incompletely growing polycrystal by electronic diffraction patterns. Purity of B_4C is shown not lower than 98% by spectrum analysis,while it is slightly lower by chemical analysis. Special attention is paid to the reaction mechanism of SHS.

关 键 词:B4C 绝热温度 自蔓延高温合成 光谱分析 容量分析 多晶 

分 类 号:TQ174[化学工程—陶瓷工业]

 

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