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研究领域

熟悉材料设计、加工原理和研究方法,新材料的研究与开发,主要研究方向为先进非晶合金和纳米晶合金的设计、制备及其结构和性能的关系等,材料研发对象为(1)新型非晶态合金、(2)新型磁性材料和(3)金属纳米材料。

近期论文

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[1] F.S. Li, B. L. Shen, A. Makino, and A. Inoue, “Excellent soft-magnetic properties of (Fe,Co)-Mo-(P,C,B,Si) bulk glassy alloys with ductile deformation behavior”, Appl. Phys. Lett. 91, 234101 (2007). [2] F.S. Li, T. Zhang, A. Inoue, S. K. Guan, and N. F. Shen, “(Fe,Co)-Zr-Nd-B Bulk Amorphous Alloys with Good Soft Magnetic Properties”, Intermetallics, 12, 1139-1142 (2004). [3] F.S. Li, T. Zhang, A. Inoue, S. K. Guan, and N. F. Shen, “A novel dual-amorphous-phased bulk metallic glass with soft magnetic properties”, Mater. Letts. 59, 1453-1457 (2005). [4] F.S. Li, S. K. Guan, B. L. Shen, A. Makino, and A. Inoue, “High Specific Strength and Improved Ductility of Bulk (Mg0.65Cu0.25Gd0.1)100-xTix Metallic Glass Composites”, Mater. Trans. 48, 3193-3196 (2007). [5] F.S. Li, T. Zhang, A. Inoue, S. K. Guan, and N. F. Shen, “Crystallization kinetics andinduced magnetic properties of the bulk (Fe,Co)-Zr-Nd-B metallic glass”, Trans. Nonferrous Met. Soc. China, 14, 840-845 (2004). [6] F.S. Li, T. Zhang, A. Inoue, S. K. Guan, and N. F. Shen, “Thermal Stability and Magnetic Properties of (Fe,Co)-Zr-Nd-B Amorphous Alloys”, Journal of rare earths, 21, 190-193, (2003). [7] Li ZC, Dong YQ, Li FS*, Chang CT, Wang XM, Li RW, “Fe78Si9B13 amorphous powder core with improved magnetic properties”, JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 28, 1180-1185, (2017). [8] Han YB, Wei R, Li ZC, Li FS*, Wang AD, Chang CT, Wang XM, “Improvement of magnetic properties for V-substituted Fe73.5Si13.5B9Cu1Nb3-xVx nanocrystalline alloys”, JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 28, 14,10555-10563 (2017). [9] Li ZC, Dong YQ, Pauly S, Chang CT*, Wei R, Li FS*, Wang XM, “Enhanced soft magnetic properties of Fe-based amorphous powder cores by longitude magnetic field annealing”, JOURNAL OF ALLOYS AND COMPOUNDS, 706, 1-6, (2017). [10] Han Yabin, Wang Anding*, He Aina, Chang CT*, Li FS* Wang, XM, “Improvement of magnetic properties, microstructure and magnetic structure of Fe73.5Cu1Nb3Si15.5B7 nanocrystalline alloys by two-step annealing process”, JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 27, 3736-3741(2016). [11] Weifei Zhou, Chuntao Chang, Akihisa Inoue, Xinmin Wang, Fushan Li*, Juntao Huo, “Direct production of hard magnetic ribbons with enhanced magnetic properties by controlling cooling rate of melt”, Journal of Applied Physics 117, 123905 (2015). [12] R. Wei, J. Tao, H. Sun, C. Chen, G.W. Sun, F.S. Li*, “Soft magnetic Fe26.7Co26.7Ni26.6Si9B11 high entropy metallic glass with good bending ductility”, MATERIALS LETTERS,197,87-89 (2017). [13] R. Wei, L.B. Chen, H.P. Li, F.S. Li*,“Compression-compression fatigue behavior of CuZr-based bulk metallic glass composite containing B2 phase”, INTERMETALLICS,85,54-58 (2017). [14] Wei R, Sun H, Chen C, Han ZH, Li FS*, “Effect of cooling rate on the phase structure and magnetic properties of Fe26.7Co28.5Ni28.5Si4.6B8.7P3 high entropy alloy”, JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 435, 184-186 (2017). [15] Wei, R, Chen, LB, Tao, J, Guo, S, Han, ZH, Li, FS*, “Effect of Shot Peening on Mechanical Behavior of Zr-Based Bulk Metallic Glasses under Monotonic and Cyclic Loading Mode”, MATERIALS TRANSACTIONS, 58, 757-760 (2017). [16] Y.F. Sun, N. Tsuji, H. Fujii, F.S. Li, “Cu/Zr nanoscaled multi-stacks fabricated by accumulative roll bonding”, JOURNAL OF ALLOYS AND COMPOUNDS, 504, S443-S447 (2010). [17] Y. F. Sun, F.S. Li, S. K. Guan, et al. “Structural characterization and mechanical properties of nanocrystals contained Cu-Ti-based bulk metallic glass forming alloys”, Journal of Materials Research, 22, 352-356, (2007). [18] Y.F. Sun, C.H. Shek, F.S. Li et al. “Stress-induced martensitic transformations in CuZrAl bulk metallic glass forming alloys”, Materials Science and Engineering A, 497, 31-36(2008).

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