个人简介
1997.9~2001.6:浙江大学金属材料及热处理专业获学士学位
2001.9~2006.6:浙江大学材料科学与工程专业获博士学位
2009.10~2009.12:台湾中正大学 访学学者
2013.10~2014.11:美国University of Delaware 访问学者
2006.7~至今:福州大学材料科学与工程学院讲师、副教授、教授
近期论文
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[1] 国家发明专利ZL 201210005073.0 一种制备块体纳米晶复合稀土永磁材料的方法,2015。
[2] 国家发明专利 ZL 201210005040.6 一种制备块体各向异性纳米晶稀土永磁材料的方法,2014。
[3] Structure and magnetic properties of boron doped Fe50+xCu25-xM25(M=Al, Ga) and Fe50+xCo25-xGa25 heusler alloys, IEEE Trans. on Magn., 2014, 50: 2103704.
[4] Magnetic properties, microstructure and corrosion behavior of Nd10Y1Fe85-xNb3.5Ti0.5Bx (x=14-22) and Nd10Y1Fe69Nb3.5M0.5B16 (M=Ti, Zr, Cr, Mo) bulk
nanocrystalline magnets, J Alloy. & Compd. 2013, 555: 16.
[5] Effects of magnetic solidification on rod shaped Nd–Fe–Ti–Zr–Cr–B–C magnets with various diameters, Materials Technology, 2013, 28:290.
[6] 用脉冲电沉积法制备两类纳米介孔氧化镍电致变色薄膜的研究,功能材料,2012, 43(4): 492.
[7]Bulk Nanocrystalline Nd-Fe-B Magnets Solidified in Magnetic Field With Various Surface Area-to-Volume Ratios, IEEE Trans. on Magn.,
2011, 47: 3263.
[8] Magnetic properties and microstructure of bulk Nd-Fe-B magnets solidified in magnetic field, J. Appl. Phys., 2011, 109: 07A715.
[9] Study on crystallization behavior and microstructure of melt-spun Nd2(Fe,Nb)14B/α-Fe alloys, J. Mater. Sci, 2010, 45: 5637.
[10] Surface quality, microstructure and magnetic properties of Nd2(Fe,Zr,Co)14B/α-Fe alloys prepared by different melt-spinning equipments, Mater. Sci. & Engin. B, 2009, 164: 71.
[11] Effects of Nd and B contents on the thermal stability of nanocomposite (Nd,Zr)2 Fe14B/α-Fe magnets, Mater. Sci. & Engin. B, 2008, 150: 77.
[12] Crystallization kinetics, microstructure and magnetic properties of Nd2Fe14B/α-Fe magnets with Zr addition, J. Phys. D: Appl. Phys., 2007, 40: 3551.