- 張明 教授團隊
- 揚州大學 聚合物基復合材料研究室
- 網址: zhangming.polymer.cn 訪問量:817111
相關鏈接
聯系方式
- 通信地址:江蘇省揚州市四望亭路180號
- 郵編:225002
- 電話:0514-87979062
- 傳真:0514-87979244
- Email:lxyzhangm@yzu.edu.cn
Formation mechanism and magnetic properties of barium hexaferrite quasi-single crystals fabricated via magnetic forming and liquid participation sintering
作者:Liu Junliang*,Ye Jiamei,Chen Xiulei,Zhang Xingkai,Ma Zhenxiong,Zhang Ming,Zeng Yanwei,Zhang Wei,Gu
關鍵字:A1. Quasi-single crystal structure, A2. Liquid participation sintering, B1. Barium compounds, B2. Magnetic materials
論文來源:期刊
具體來源:Journal of Crystal Growth
發表時間:2013年
Highly textured barium hexaferrite material is a good candidate as the high performance gyromagnetic ferrite for self-biased and low loss millimeter wave devices. To fabricate it, a magnetic forming and liquid phase participation sintering route has been developed and its formation mechanism has been discussed based on the heating behaviors of starting powders and micro-structural characteristics of sintered bulk materials. The results indicated that the diffusion and re-crystallization of liquid phase from melting of small crystallites promoted fast densification and high orientation and led to the formation of highly textured structures. The highest grain orientation degree achieved to 0.986 at the optimum sintering temperature of 1280 °C. As the grain orientation degree increased, the coercive forces of the obtained barium hexaferrite materials dramatically decreased from 5185 Oe to 120 Oe, while the apparent magneto-crystalline anisotropic fields linearly decreased to the value very similar to the theoretical value of single crystals.
關鍵字:A1. Quasi-single crystal structure, A2. Liquid participation sintering, B1. Barium compounds, B2. Magnetic materials
論文來源:期刊
具體來源:Journal of Crystal Growth
發表時間:2013年
Highly textured barium hexaferrite material is a good candidate as the high performance gyromagnetic ferrite for self-biased and low loss millimeter wave devices. To fabricate it, a magnetic forming and liquid phase participation sintering route has been developed and its formation mechanism has been discussed based on the heating behaviors of starting powders and micro-structural characteristics of sintered bulk materials. The results indicated that the diffusion and re-crystallization of liquid phase from melting of small crystallites promoted fast densification and high orientation and led to the formation of highly textured structures. The highest grain orientation degree achieved to 0.986 at the optimum sintering temperature of 1280 °C. As the grain orientation degree increased, the coercive forces of the obtained barium hexaferrite materials dramatically decreased from 5185 Oe to 120 Oe, while the apparent magneto-crystalline anisotropic fields linearly decreased to the value very similar to the theoretical value of single crystals.