引用本文:
战可涛, 郑俊, 张慧, 段雪, 张密林. 热处理温度对BaFe12O19粉体微结构和磁性的影响[J]. 应用化学,
2002, 19(7): 682-686.
Citation: ZHAN Ke-Tao, ZHENG Jun, ZHANG Hui, DUAN Xue, ZHANG Mi-Lin. The Effect of Heat Treatment Temperature on the Microstructures and Magnetic Properties of BaFe12O19 Powder[J]. Chinese Journal of Applied Chemistry, 2002, 19(7): 682-686.
Citation: ZHAN Ke-Tao, ZHENG Jun, ZHANG Hui, DUAN Xue, ZHANG Mi-Lin. The Effect of Heat Treatment Temperature on the Microstructures and Magnetic Properties of BaFe12O19 Powder[J]. Chinese Journal of Applied Chemistry, 2002, 19(7): 682-686.
热处理温度对BaFe12O19粉体微结构和磁性的影响
摘要:
以Ba(NO3)2、Fe(NO3)2和NH4HCO3·NH2COONH4为反应原料,采用成核/晶化隔离法和后续热处理工艺过程,制备了平均粒径50nm的永磁铁氧体BaFe12O19粉体.用X射线衍射、透射电子显微镜及磁测量手段分析研究了粉体的微观结构与磁性能.结果表明,热处理温度决定粉体的相组成、微观结构和磁性.当热处理温度升高到650℃时,粉体中出现BaFe12O19永磁相,随着热处理温度进一步升高,磁性BaFe12O19结晶进一步完善,晶粒长大,形成六角形片状粉体,粉体的比饱和磁化强度es、比剩余磁化强度er和矫顽力Hc增大.经过900℃热处理后的粉体,矫顽力可达到480kA/m.
-
关键词:
- BaFe12O19永磁铁氧体
- / 热处理
- / 微结构
- / 磁性
English
The Effect of Heat Treatment Temperature on the Microstructures and Magnetic Properties of BaFe12O19 Powder
Abstract:
The permanent magnetic BaFe12O19 powder with average particle size of 50 nm was synthesized by a method consisted of independent nucleation and crystallization steps and subsequent heat treatment starting materials from Ba(NO3)2, Fe(NO3)2 and NH4HCO3·NH2COONH4. The effects of heat treatment temperatures on the particle size, microstructure and magnetic properties of the powder have been studied by XRD, TEM and VSM techniques. The results showed that the hematite T-Fe2O3 was the main phase in the powder at heat treatment temperatures below 650℃ and its amount in the powder decreased with increase of temperature. However small amounts of T-Fe2O3 still remained in the powder after being heated at 900℃ for 8 h. BaFe12O19 was formed at about 650℃ and its amount in the powder increased with increase of temperature. It needed more high temperature to attain considerable amount of BaFe12O19 and ideal nanosize BaFe12O19 particle in the powder. The particle size also increased with temperature. Heating at 800℃ for 8 h gave a uniform particle size distribution, and heating at 900℃ for 8 h a typical hexagonal shape and chain aggregation were observed. The specific saturation magnetization strength, specific residual magnetization strength and coercive force all increased with temperatuer from 650℃ to 900℃ and reached 39.83 A·m2/kg, 23.96A·m2/kg and 480 kA/m at 900℃ respectively.
-
-
扫一扫看文章
计量
- PDF下载量: 1
- 文章访问数: 656
- HTML全文浏览量: 82

下载: