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韩广兵
学位:理学博士学位
职称:副教授
所在单位:物理学院
教师英文名称:
Guangbing Han
教师拼音名称:
hanguangbing
电子邮箱:
hangb@sdu.edu.cn
入职时间:
1999-07-01
所在单位:
物理学院
学历:
研究生(博士)毕业
办公地点:
知新楼C1124
性别:
男
联系方式:
hangb@sdu.edu.cn
在职信息:
在职
毕业院校:
山东大学
是否在职:
1
硕士生导师
论文成果
[76] 韩广兵. Anisotropic HDDR-treated Nd2Fe14B-type power. SCIENCE CHINA-physics, mechanics & astronomy, 53, 1590, 2010.
[77] 韩广兵. Effect of Weak Magnetic Intergranular Phase on the Coercivity in the HDDR Nd-Fe-B Magnet. Journal Electromagnetic Analysis & Applications, 1, 249, 2009.
[78] 胡树军 , 颜世申 , 康仕寿 , 梅良模 and 韩广兵. Magnetic properties of rutile TiO2-1/6 from first-principles calculations. Phys. Status Solidi RRL, 4, 236, 2010.
[79] 韩广兵. Origin of anisotropy for the HDDR Nd13.5Fe79.5B7 magnetic powders. Physica B, 406, 3534, 2011.
[80] 韩广兵. Magnetic Performance of a Nanocomposite Permanent Material. Chin. Phys. Lett, 28, 087501, 2011.
[81] 韩广兵. Effect of desorption hydrogen pressure on anisotropy of HDDR-treated Nd-Fe-B powders. Advanced Materials research, 284-286, 1525, 2011.
[82] 胡树军 , 颜世申 , 梅良模 and 韩广兵. Oxygen vacancy induced ferromagnetism in rutile TiO<inf>2-x</inf>. Physica Status Solidi-Rapid Research Letters, 3, 148, 2009.
[83] 韩广兵. High-Spin States and Level Structure in Stable Nucleus Strontium-84. scientific reports, 3, 15818, 2013.
[84] 韩广兵. Effect of microstructure on the coercivity of HDDR Nd-Fe-B permanent magnetic alloy. SCIENCE IN CHINA SERIES G-PHYSICS ASTRONOMY, 2008.
[85] 韩广兵. Grain size dependence of coercivity of nanocomposite permanent magnets in three phase-distribution models. Acta Metallurgica Sinica, 2008.
[86] 韩广兵. Anisotropy at nano-grain boundary and effective anisotropy between magnetically soft and hard nano-grains. Journal of magnetism and magnetic materials, 320, 760, 2008.
[87] 韩广兵. Anisotropy and pinning field in nanocomposite magnetic materials . Solid State Communications, 2008.
[88] 韩广兵. Erratum: High-spin states and level structure in 84Rb [Phys. Rev. C 82, 014306 (2010)]. PHYSICAL REVIEW C, 91, 029902(E), 2015.
[89] 康仕寿 , 于淑云 and 韩广兵. Magnetic after-effect in optimal melt-spun Pr7.8Fe75.8Co5Cr5B6.4 ribbons. 2015 IEEE International Magnetics Conference, 2015.
[90] 于淑云 , 康仕寿 and 韩广兵. Magnetic reversal and magnetic memory effect in melt-spun Pr2Fe14B/alpha-Fe nanocomposite ribbons. Journal of Rare Earths, 33, 1303, 2015.
共94条 6/7
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