期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Tuning magnetic properties, thermal stability and microstructure of NdFeB magnets with diffusing Pr-Zn films 被引量:5
1
作者 Jiajie Li Xiangyun Huang +6 位作者 Liangliang Zeng Bo Ouyang Xiaoqiang Yu Munan Yang Bin Yang Rajdeep Singh Rawat Zhenchen Zhong 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2020年第6期81-87,共7页
Grain boundary diffusion process(GBDP)serves as a promising approach in improving magnetic properties and thermal stability of Nd FeB permanent magnets.Herein,non-heavy rare earth Pr-Zn films deposited on the magnet s... Grain boundary diffusion process(GBDP)serves as a promising approach in improving magnetic properties and thermal stability of Nd FeB permanent magnets.Herein,non-heavy rare earth Pr-Zn films deposited on the magnet surface using DC-magnetron sputtering system are reported.The thermal stability and coercivity enhancement mechanism of Pr-Zn GBDP magnets were investigated.Results show that the coercivity of Pr-Zn GBDP magnet increases from 963.96 kA m^-1 to 1317.14 kA m^-1 without any remanence reduction.Notably,the demagnetization curve of Pr-Zn GBDP magnet still remains a high squareness ratio.The temperature coefficient of coercivity and anti-demagnetization ability of Pr-Zn GBDP magnet under high temperatures are improved after GBDP treatment.The well-optimized rare earth-rich(RE-rich)grain boundary phases and high effective anisotropy field of(Nd,RE)2 Fe14 B magnetic hardening layers surrounding main grains are the key factors to impact the magnetic properties and thermal stability of Nd FeB permanent magnets via GBDP treatment. 展开更多
关键词 NDFEB Co-sputtering pr-zn films Thermal stability COERCIVITY mechanism
原文传递
纳米粉末Zn_(0.2)Ca_(0.8)TiO_3:Pr的合成与表征 被引量:2
2
作者 王晓楠 左斌 《吉林化工学院学报》 CAS 2011年第1期19-22,共4页
采用溶胶-凝胶法,以CaTiO3作为基质,掺杂Zn2+离子,合成了名义组成为Zn0.2Ca0.8TiO3:Pr的纳米粉末,通过XRD,TEM,发射光谱和激发光谱等测试手段来表征Zn0.2Ca0.8TiO3:Pr的结构,形貌和荧光性质.研究表明,Zn0.2Ca0.8TiO3:Pr为正方晶格结构,... 采用溶胶-凝胶法,以CaTiO3作为基质,掺杂Zn2+离子,合成了名义组成为Zn0.2Ca0.8TiO3:Pr的纳米粉末,通过XRD,TEM,发射光谱和激发光谱等测试手段来表征Zn0.2Ca0.8TiO3:Pr的结构,形貌和荧光性质.研究表明,Zn0.2Ca0.8TiO3:Pr为正方晶格结构,随着灼烧温度的升高,晶粒尺寸逐渐增大,由TEM照片可以看到粒子在高温时发生了明显的团聚现象.Zn0.2Ca0.8TiO3:Pr的发射峰值随着温度升高逐渐增强,在1 000℃时发射峰最强,发射主峰位于612 nm处.Zn0.2Ca0.8TiO3:Pr的激发光谱为一宽带谱,随温度升高逐渐分裂成两个激发峰,激发主峰分别位于261 nm和327 nm处,在1 000℃时激发峰值最强.余辉性能测试表明Zn0.2Ca0.8TiO3:Pr的余辉时间可达到100 ms. 展开更多
关键词 M0.2Ca0.8TiO3:pr(M=zn Mg) 溶胶-凝胶法 光谱分析 稀土发光材料 红色发光
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部