Mechanism of Self-Propagating High-Temperature Synthesis of AlB2–Al2O3 Composite Powders


如何引用文章

全文:

开放存取 开放存取
受限制的访问 ##reader.subscriptionAccessGranted##
受限制的访问 订阅存取

详细

The mechanism of self-propagating high-temperature synthesis (SHS) of AlB2–Al2O3 composite powders was studied using the combustion front quenching method (CFQM). The results showed that the combustion began with fusion of B2O3 and Al particles followed by mutual penetration of Al and B2O3 in the melt. X-ray patterns exhibited reflections for Al2O3 that were consistent with exchange of O atoms between Al and B through the reaction B2O3 + 2Al → 2B + Al2O3. A certain amount of B2O3 volatilized at higher temperatures and reacted with B to form gaseous B2O2. Al2O3 and B precipitated on the Al surface. Then, the produced B dissolved in the Al melt and reacted with Al to precipitate AlB12 particles. Finally, AlB12 transformed into AlB2 at the peritectic temperature during rapid cooling. Thus, the combustion could be explained by a dissolution-precipitation mechanism. The final products included AlB2 and Al2O3 particles and a certain amount of Al. A model of the dissolution-precipitation mechanism was proposed. The ignition temperature of the combustion was ~800°C.

作者简介

Pan Yang

College of Materials and Mineral Resources, Xi’an University of Architecture and Technology; HuaQing College, Xi’an University of Architecture and Technology

Email: dingdongxauat@163.com
中国, Xi’an, 710055; Xi’an, 710043

Guoqing Xiao

College of Materials and Mineral Resources, Xi’an University of Architecture and Technology

Email: dingdongxauat@163.com
中国, Xi’an, 710055

Donghai Ding

College of Materials and Mineral Resources, Xi’an University of Architecture and Technology

编辑信件的主要联系方式.
Email: dingdongxauat@163.com
中国, Xi’an, 710055

Yun Ren

College of Materials and Mineral Resources, Xi’an University of Architecture and Technology

Email: dingdongxauat@163.com
中国, Xi’an, 710055

Zhongwei Zhang

College of Materials and Mineral Resources, Xi’an University of Architecture and Technology

Email: dingdongxauat@163.com
中国, Xi’an, 710055

Shoulei Yang

College of Materials and Mineral Resources, Xi’an University of Architecture and Technology

Email: dingdongxauat@163.com
中国, Xi’an, 710055

Wei Zhang

College of Materials and Mineral Resources, Xi’an University of Architecture and Technology

Email: dingdongxauat@163.com
中国, Xi’an, 710055

补充文件

附件文件
动作
1. JATS XML

版权所有 © Springer Science+Business Media, LLC, part of Springer Nature, 2019