杨元政

作者: 时间:2021-03-09 点击数:

 

 


杨元政    教授

所属学院:

材料与能源学院

导师类别:

博士生导师/硕士生导师

科研方向:

先进金属及电子功能材料

联系方式:

yangyz@gdut.edu.cn; 或3177512062@qq.com

招生学院:

材料与能源学院

个人简述

杨元政:1966年生,湖南泸溪人,工学博士,二级教授,博士生导师,广东省第二批千百十工程省级培养人才。已培养博士研究生7名,硕士研究生62名。多名研究生获国家奖学金,毕业后已成为省杰青获得者,高校、研究所的教授、博导,或企业的负责人、研究院长或技术总监。培养的研究生素质高,竞争力强。

长期开展非晶纳米晶软磁合金、金属磁粉芯、大块非晶合金及高熵合金等先进金属材料及器件研究工作。特别在高性能非晶纳米晶软磁合金带材生产、热处理工艺、磁器件设计及应用等方面具有丰富的实践经验,与国内多家非晶纳米晶合金企业建立了广泛的联系和合作,相关科研成果已在企业中广泛应用。在金属磁粉芯、电磁波屏蔽与吸波材料等新型磁电材料及器件方面也积累了丰富经验,产业化前景好。

主持或完成国家自然科学基金项目、广东省基础与应用基础重大项目(合作)、教育部博士点基金、省自然科学基金、省部产学研结合项等各类科研项目20余项,在国内外学术刊物上发表论文180余篇,其中SCIEI收录100余篇,申请发明专利50余件,已授权发明专利20余件。

欢迎材料类专业、物理类专业报考博士,硕士研究生。

 

学科领域

科学学位:材料科学与工程//微电子学与固体电子学

专业学位:材料与化工

教育背景

19859-19896  在兰州大学半导体专业学习,获理学学士学位

19899-19926  在中国科技大学和中国科学院固体物理研究所凝聚态物理专业学习,

获中国科学院理学硕士学位

19939-19966  在中国科学院金属研究所和华南理工大学材料科学与工程专业学习,

获华南理工大学工学博士学位

工作经历

19926-19938     中国科学院固体物理研究所,任研究实习员

19967-至今,       广东工业大学,曾到英国利物浦大学、中国科学院物理所作高级访问学者,先后任讲师,副教授(199812月),教授(200212月),博士生导师(200612月)。

学术兼职

广东省材料研究学会理事

广东省金属学会理事

 

 

主要论文

[1]         Jia Xu, Xin Liu, Guotai Wang, Ting Luo, Jian Wang, Kechao Lu, Yuanzheng   Yang(杨元政)*. Crystallization   behavior, soft magnetic properties and good bending ductility of high Fe content   FeSiBCuPC alloys induced by composition design. J. Alloy. Compd., 2021, 859: 157850.

[2]         Jia   Xu, Yuanzheng Yang(杨元政)*, Qiusheng Yan, Guihua Xiao, Ting Luo   and Chenfeng Fan. Softening and magnetic properties of ultrahigh Fe content FeSiBCuPC   nanocrystalline alloy induced by low-pressure stress annealing. Scripta   Materialia, 2020, 179: 6–11.

[3]         Jia   Xu, Yuanzheng Yang(杨元政)*, Qiusheng Yan,   Fangtao Hou, Chenfeng Fan,Guotai Wang, Ting Luo, Effects of the substitution   of Si by P on crystallization behavior, soft magnetic properties and bending   ductility of FeSiBCuPC alloys, Journal of Alloys and Compounds, 2020, 816:   152534/9.

[4]         Wen   Li, Y.H. Yang, C.X. Xie, Y.Z. Yang(杨元政), H.Y. Liu, K.W.   Wang and Z.L. Liao. Glass formation, crystallization and magnetic properties   of high-Fe Femetalloid (B, C, and P) melt-spun ribbons. Journal of Magnetism   and Magnetic Materials, 2020, 498: 126128/7.

[5]         Wang   G.T. Zhou L.Yuan H. Zheng L.B. and Yang Y.Z(杨元政). Hf optimizes   the glass forming ability and controls the crystallization behavior in   Fe-rich Fe-B-Cu alloys. Journal of Non-Crystalline Solids, 2020, 527:   119740/8.

[6]         Wen   Li, C.X. Xie, H.Y. Liu, K.W. Wang, Z.L. Liao and Y.Z. Yang(杨元政). Minor-metalloid   substitution for Fe on glass formation and soft magnetic properties of   Fe–Co–Si–B–P–Cu alloys. Journal of Non-Crystalline Solids, 2020, 533:   119937/5.

[7]         H.   Yuan, L. Zhou, G.T. Wang, L.B. Zheng and Y.Z. Yang(杨元政). Si   microalloying optimizes the thermal stability, crystallization behaviors and   magnetic properties of Fe-rich Fe-B-Cu-Hf alloys. Journal of Magnetism and   Magnetic Materials, 2020, 500: 166339/10.

[8]         Jia   Xu, Yuanzheng Yang(杨元政)*, Qiusheng Yan,   Chenfeng Fan, Fangtao Hou and Zhiwei Xie. Effect of microalloying on   crystallization behavior, magnetic properties and bending ductility of high   Fe content FeSiBCuPC alloys. Journal of Alloys and Compounds, 2019, 777:   499-505.

[9]         Chunxiao   Xie, Wen Li, Donghai Zheng, Kewei Wang, Yuanzheng Yang(杨元政), Fanghua Shen,   Li Xie and Zilong Liao, ShouYan Zhong. Study of crystallization behavior and   kinetics of magnetic FeCoCrNiZr high entropy amorphous alloy. Journal of   Non-Crystalline Solids, 2019, 514: 20-24.

[10]      L.   Zhou, G. T. Wang, L. B. Zheng and Y. Z. Yang(杨元政). Effects on   glass forming ability, microstructure, crystallization behaviors, and   magnetic properties of Si substituting for P in Fe-rich   Fe86B13−xSixP1Cu0.6Hf0.4 alloys. Journal of Superconductivity and Novel   Magnetism. 2019, 32:431–439

[11]      Luo   Ting, Yang Yuanzheng(杨元政), Fan Chenfeng,   Xie Zhiwei, Xu Jia, Wang Guotai. Crystallization behavior and magnetic   properties for the Fe73(Si0.64B0.27P0.09)23+xCu1Nb3-x (x=0, 1 and 2) alloys.   Physica B: Condensed Matter. 2019, 557: 99–102.

[12]      Liu,   Y Q; Xu, J X, Yang, Y Z(杨元政), Xie, Z W. Influence of   pre-sulfurization temperature on properties of Cu2ZnSnS4 thin film in   two-step sulfurization process. J. Rennew. Sustain. Engery. 2019,11(2):   023501.

[13]      Guo   Tai Wang, Lin Zhou, Li Bao, Zheng, and Yuan Zheng Yang(杨元政)Crystallization phases and   crystallization saturation magnetization under different annealing ways in   Fe-rich Fe-B/SiBP-Cu-Hf alloysIEEE   Trans.Magnet.2018,54(12): 2003105/5.

[14]      Lin   Zhou, Guo Tai Wang, Han Yuan and Yuan Zheng Yang(杨元.)*, Effect of Hf   addition on the glass forming ability, thermal and magnetic properties in the   (Fe86B13Cu1)100 − xHfx alloys, Journal of Non-Crystalline Solids,2018, 501,   167–172.

[15]      Jia   Xu, Yuanzheng Yang(杨元政)*,   Qiusheng Yan, Xianchao Chen, Zhiwei Xie, Fangtao Hou. Effect of heat   treatments on crystallization behavior, thermal ability and magnetic properties   of Fe85Si1.4B9P4Cu0.5C0.1 amorphous alloy. J. Non-Crystal. Solids, 2018, 499:   420-425.

[16]      Jia   Xu, Yuanzheng Yang(杨元政)*, Wen   Li, Zhiwei Xie, Xianchao Chen. Effect of Si addition on crystallization   behavior, thermal ability and magnetic properties in high Fe content   Fe-Si-B-P-Cu-C alloy, Materials Research Bulletin, 2018,97:452-456.

[17]      Lin   Weide, Yang Yuanzheng(杨元政)*, Xu   Jia and Li Wen, Effect of Nb, Si and Cu on the crystallization process   and magnetic properties of FeNbBP alloys, Journal of   Alloys and Compounds,2018,735,1195-1199.

[18]      L.   Zhou, G. T. Wang, L. B. Zheng and Y. Z. Yang(杨元政. The Effect of Hf Substituting for Cu   on the Glass-Forming Ability, Crystallization Behavior, and Saturation   Magnetization in Fe85Si2B8P4Cu1−x Hfx Alloys. Journal of Superconductivity   and Novel Magnetism. https://doi.org/10.1007/s10948-018-4612-0.

[19]      Wen   Li, C. X. Xie, Y. Z. Yang(杨元政and C.   L. Yao. Effect of Si on the Glass Formation and Magnetic Properties of   High-Iron Fe–Zr–Si Alloys. Journal of Superconductivity and Novel Magnetism   (2018) 31:2805–2809. https://doi.org/10.1007/s10948-017-4545-z.

[20]      Wen   Li, C.X. Xie, Y.Z. Yang(杨元政and   C.L. Yao. Glass formation and soft magnetic properties in Dy-containing   Fe-Si-B alloys by adjusting B/Si mole ratio. Journal of Non-Crystalline   Solids. 2018, 489: 1–5.

[21]      Chunxiao   Xie, Yuanzheng Yang(杨元政), Shouyan   Zhong, Sheng Li, Shichun Deng. Formation, magnetic properties and bending   deformation of Fe-based amorphous alloy without metalloids. J. Alloys and   Compounds, 2017, 695: 877-880.

[22]      Jia   Xu, Y.Z. Yang(杨元政)*, Wen   Li, Z.W Xie, X.C Chen. Effect of the substitution of C for Si on the   microstructur, magnetic properties and bending ductility in high Fe content   FeSiBCuPC alloy ribbons, Journal of Alloys and Compounds.2017,727: 610-615.

[23]      Li   Wen, Yang Yuanzheng(杨元政)*, Xu   Jia and Xie Chunxiao. Glass formation and magnetic properties of FeHfZrM (M =   metalloids Si, P, and B and metal Al) high-iron alloys. J. Alloys and   Compounds, 2017, 710: 644-649.

[24]      Li   Wen, Yang Yuanzheng(杨元政)*, Yao   Chuanlian, Xie Zhiwei and Xie Chunxiao. Glass forming ability and magnetic   properties of Fe–B–Si–EM (EM = Ti, Zr, Mo, and Hf) alloys with high iron   content. J Mater. Sci, Mater Electron, 2017, 28(14): 10218-10223.

[25]      Li   Wen, Yang Yuanzheng(杨元政)* and   Xu Jia. Crystallization and soft magnetic properties of metalloid-free   Fe89Hf7Al3Zr1 amorphous alloy, Journal of Non-Crystalline Solids, 2017, 461:   93–97.

[26]      Xu   Jia, Yang Yuanzheng(杨元政)*,Li   Wen and Chen Xianchao. The effect of introduction of carbon on the glass   forming ability and magnetic properties of melt-spun Fe-Si-B-Cu-C alloys. J.   Non-Crystalline Solids2016,   447: 167–170.

[27]      Xu   Jia, Yang Yuanzheng(杨元政)*, Li   Wen and Xie Zhiwen. Effect of P addition on glass forming ability and soft   magnetic properties of melt-spun FeSiBCuC alloy ribbons2016Mag.   Mag. Mater, 2016, 417:291-293.

 

知识产权

[1]         杨元政, 徐佳, 李美瑶, 杨会军. 一种基于硅元素的铁基非晶纳米晶软磁合金及其制备方法, 发明专利ZL201611239499.7.

[2]         徐佳, 杨元政, 李美瑶, 杨会军. 一种铁基非晶纳米晶软磁合金及其制备方法发明专利ZL201611239483.6.

[3]         徐佳, 杨元政, 李美瑶. 一种铁基非晶纳米晶软磁合金及其制备方法, 发明专利ZL201710640941.5.

[4]         徐佳杨元政李美瑶. 一种高性能铁基非晶纳米晶合金热处理方法发明专利ZL201811385880.3.

[5]         周林,杨元政,王国太,肖猛,袁涵,李文,姚春连. 一种铁基纳米晶合金及其制备方法,发明专利ZL201810038810.4.

[6]         周林杨元政王国太肖猛袁涵李文姚春莲,一种铁基纳米晶合金及其制备方法, 发明专利ZL201810743937.6.

[7]         王国太, 杨元政, 袁涵, 姚春莲, 周林, 徐佳, 李文.一种低成本高饱和磁化强度的铁基软磁合金及其制备方法, 发明专利ZL201710581104.X.

[8]         王江南陈先朝杨元政谢致薇何玉定一种铁基纳米晶材料的热处理方法,发明专利ZL201611192535.9.

[9]         王江南,陈先朝,左江波,杨元政,谢致薇,何玉定,许佳雄. 一种制备高性能铁基纳米晶合金磁芯的热处理方法和系统,发明专利ZL201610740055.5.

 

科研项目

[1]          国家自然科学基金项目:具有抗应力的高频高磁导率的铁基非晶纳米晶软磁合金及其激光快速切割加工关键技术研究(批准号:52071089

[2]          国家自然科学基金项目:全金属元素铁基大块非晶合金的形成、微结构与性能研究(批准号:50971046)

[3]          国家自然科学基金项目:铜基大块非晶合金中纳米磁性相的析出及磁阻效应研究(批准号:50771037)

[4]          国家自然科学基金项目:大块非晶合金的载能粒子作用效应及其性能研究(批准号:50371020)

[5]          广东省基础与应用基础研究重大项目: 新一代非晶合金的设计、制备及先进制造基础研究(批准号:2019B030302010,总经费3880万元)(子项目合作)

[6]          广州市企业难题招标项目重大项目:再生铝先进熔炼技术与装备(编号:GK0701012,总经费600万)。





 

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