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    • 王慧远教授

      吉林大学材料科学与工程学院院长
      地址:吉林省长春市人民大街5988号
      邮箱:wanghuiyuan@jlu.edu.cn
      个人主页:http://dmse.jlu.edu.cn/info/1173/1702.htm

    • 个人简介

      王慧远,国家杰出青年基金获得者,全国优秀博士学位论文获得者,教授,博士生导师,主要从事轻合金非平衡凝固与组织控制等制备科学与加工技术研究。作为主要获奖人,获国家技术发明二等奖和吉林省科学技术(自然类)一等奖。作为项目负责人,主持国家自然科学基金杰出青年基金、国家重点研发项目(政府间国际合作)、国家863计划课题、973计划子题、十二五支撑计划专题、吉林省重大科技项目研发人才团队项目等国家和省、部级项目25项。授权发明专利13件,发表SCI 论文124 篇,被SCI 他引1659 次;H 因子25。入选吉林省高级专家、长白山学者、教育部新世纪优秀人才、《Scientific Reports》编委、《Journal of Materials Science & Technology》编委等。指导学生获中国青少年科技创新奖1项、获吉林省优秀硕士学位论文3篇;7名毕业硕士生在美国、挪威、德国、荷兰等继续攻读博士。

      教育经历

      1994.09-1998.08 原吉林工业大学材料科学与工程学院焊接工艺及设备专业 获学士学位

      1999.09-2002.03 吉林大学材料科学与工程学院 材料加工工程专业 获硕士学位

      2002.04-2004.12 吉林大学材料科学与工程学院 材料加工工程专业 获博士学位

      成果奖励/学术荣誉

    • 2016 获国家杰出青年基金

      2014 获长白山学者特聘教授称号

      2014 获吉林省高级专家

      2007 获全国百篇优秀博士学位论文

      2006 入选教育部“新世纪优秀人才”计划

      2007 获吉林省杰出青年基金

      2008 获得吉林省第十批突出贡献中青年专业技术人才称号

      2012 入选第三批(第二层次)吉林省拔尖创新人才工程

      2013 获吉林省自然科学一等奖(排名第二)

      学术兼职

      《Scientific Reports》编委

      《Journal of Materials Science & Technology》编委

      吉林省机械工程学会青年委员会 主任委员

      中国材料研究学会镁合金分会青年委员会 副主任委员

      中国材料研究学会青年委员会 理事

      研究方向

      非平衡凝固与组织控制;强韧化与塑性变形;新型能源电池;第一性原理

    • 发表论文:

    • [1] D. Luo, H. Y. Wang, L. Zhang, G. J. Liu, J. B. Li, Q. C. Jiang. Microstructure evolution and tensile properties of hot rolled Mg-6Al-3Sn alloy sheet at elevated temperatures. Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing. 2015; 643: 149-55.

    • [2] 王慧远, 李超, 李志刚, 徐进, 韩洪江, 管志平, et al. 纳米增强体强化轻合金复合材料制备及构型设计研究进展与展望. 金属学报. 2019; 55: 683-91.

    • [3] H. Zhang, H. Y. Wang, Wang J. G, J. Rong, M. Zha, C. Wang, et al. The synergy effect of fine and coarse grains on enhanced ductility of bimodal-structured Mg alloys. J Alloys Compd. 2019; 780: 312-7.

    • [4] H. Y. Wang, J. Rong, G. J. Liu, M. Zha*, C. Wang, D. Luo, Q. C. Jiang, Effects of Zn on the microstructure and tensile properties of as-extruded Mg-8Al-2Sn alloy, Materials Science & Engineering A, 2017, 698: 249-255.

    • [5] H. Y. Wang, J. Rong, Z. Y. Yu, M. Zha*, C. Wang, Z. Z. Yang, R. Y. Bu, Q. C. Jiang, Tensile properties, texture evolutions and deformation anisotropy of as-extruded Mg-6Zn-1Zr magnesium alloy at room and elevated temperatures, Materials Science & Engineering A, 2017, 697: 149-157.

    • [6] H. Y. Wang, H. C. Yu, C. Li, M. Zha*, C. Wang, Q. C. Jiang, Morphology evolution of primary Mg2Si in Al-20Mg2Si-0. 1Ca alloys prepared with various solidification cooling rates, CrystEngComm, 2017, 19(12): 1680-1688.

    • [7] H. C. Yu, H. Y. Wang*, L. Chen, M. Zha*, C. Wang, C. Li, Q. C. Jiang, Spheroidization of primary Mg2Si in Al-20Mg2Si-4. 5Cu alloy modified with Ca and Sb during T6 heat treatment process, Materials Science & Engineering A, 2017, 685: 31-38.

    • [8] L. Lu, H. Y. Wang*, J. G. Wang, C. Wang*, Design and synthesis of ZnO–NiO–Co3O4 hybrid nanoflakes as high-performance anode materials for Li-ion batteries, Journal of Materials Chemistry A, 2017, 5: 2530-2538.

    • [9] L. Chen, H. Y. Wang*, K. Liu, C. Wang*, D. Luo, Q. C. Jiang, Growth of Mg2Si crystals shaped by {100} and {111} facets from Al-Mg-Si melts in the presence of calcium, CrystEngComm, 2017, 19(22): 3058-3062.

    • [10] Z. P. Yu, M. Zha*, Z. H. Li, C. Wang, H. Y. Wang*, Q. C. Jiang, Achieving fine grain structure and superplasticity in AZ91-0.4Sn magnesium alloy using short flow rolling process, Materials Science & Engineering A, 2017, 695: 1-5.

    • [11] H. Y. Wang, X. N. Xue, X. Y. Xu, C. Wang*, L. Chen, Q. C. Jiang, “Effects of doping atoms Sb, Te, Sn, P and Bi on the equilibriumshape of Mg2Si from first-principles calculations”, CrystEngComm, 2016, 18: 8599-8607.

    • [12] X. Zhu, Y. G. Zhao, M. Wu, H. Y. Wang*, Q. C. Jiang, Fabrication of 2014 aluminum matrix composites reinforced with untreated and carboxyl-functionalized carbon nanotubes, Journal of Alloy and Compounds, 2016, 674: 145-152.

    • [13] H. Y. Wang, F. Liu, L. Chen, M. Zha*, G. J. Liu, Q. C. Jiang, The effect of Sb addition on microstructures and tensile properties of extruded Al–20Mg2Si–4Cu alloy, Materials Science & Engineering A, 2016, 657: 331-338.

    • [14] X. B. Zhong, Z. Z. Yang, H. Y. Wang*, L. Liu, B. Jin*, M. Zha, Q. C. Jiang, A novel approach to facilely synthesize mesoporous ZnFe2O4 nanorods for lithium ion batteries, Journal of Power Sources, 2016, 306: 718-723.

    • [15] Z. Z. Yang, H. Y. Wang*, L. Lu, C. Wang, X. B. Zhong, J. G. Wang, Q. C. Jiang, Hierarchical TiO2 spheres as highly efficient polysulfide host for lithium-sulfur batteries, Scientific Reports, 2016, 6: 22990.

    • [16] H. Y. Wang, E. B. Zhang, X. L. Nan, L. Zhang, Z. P. Guan*, Q. C. Jiang, A comparison of microstructure and mechanical properties of Mg–9Al–1Zn sheets rolled from as-cast, cast-rolling and as-extruded alloys, Materials & Design, 2016, 89: 167-172.

    • [17] H. C. Yu, H. Y. Wang*, L. Chen, F. Liu, C. Wang, Q. C. Jiang, Heterogeneous nucleation of Mg2Si on CaSb2 nucleus in Al-Mg-Si alloys, CrystEngComm, 2015, 17(37): 7048-7055.

    • [18] H. Y. Wang*, B. Y. Wang, J. K. Meng, J. G. Wang*, Q. C. Jiang, One-step synthesis of Co-doped Zn2SnO4-graphene-carbon nanocomposites with improved lithium storage performances, Journal of Materials Chemistry A, 2015, 3: 1023-1030.

    • [19] H. Y. Wang, Z. P. Yu, L. Zhang, C. G. Liu, M. Zha*, C. Wang, Q. C Jiang, Achieving high strength and high ductility in magnesium alloy using hard-plate rolling HPR process, Scientific Reports, 2015, 5.

    • [20] H. Y. Wang, E. S. Xue, X. L. Nan, T. Yue, Y. P. Wang, Q. C. Jiang*, Influence of grain size on strain rate sensitivity in rolled Mg-3Al-3Sn alloy at room temperature, Scripta Materialia, 2013, 68(5): 229-232.

    • [21] H. Y. Wang, N. Zhang, C. Wang, Q. C. Jiang*, First-principles study of the generalized stacking fault energy in Mg-3Al-3Sn alloy, Scripta Materialia, 2011, 65(8): 723-726.

    • [22] C. Wang, H. Y. Wang*, T. L. Huang, X. N. Xue, F. Qiu, Q. C. Jiang*, Generalized-stacking-fault energy and twin-boundary energy of hexagonal close-packed Au: A firstprinciples calculation, Scientific Reports, 2015, 5.

    • [23] C. Wang, T. L. Huang, H. Y. Wang*, X. N. Xue, Q. C. Jiang, Effects of distributions of Al, Zn and Al+Zn atoms on the strengtheningpotency of Mg alloys: A first-principles calculations, Computational Materials Science, 2015, 104: 23-28.

    • [24] H. Y. Wang, T. T. Feng, L. Zhang, C. G. Liu, Y. Pan, M. Zha*, X. L. Nan, C. Wang, Q. C. Jiang, Achieving a weak basal texture in a Mg–6Al–3Sn alloy by wave-shaped die rolling, Materials and Design, 2015, 88(0261-3069): 157-161.

    • [25] X. L. Nan, H. Y. Wang*, J. Rong, E. S. Xue, G. J. Liu, Q. C. Jiang, Tensile Deformation Behaviors in a Fine-Grained, Rolled Mg-3Al-3Sn Alloy at Room Temperature up to 250 degrees C, Advanced Engineering Materials, 2015, 17(2): 199-204.

    • [26] B. Y. Wang, H. Y. Wang*, Y. L. Ma, X. H. Zhao, W. Qi, Q. C. Jiang, Facile synthesis of fine Zn2SnO4 nanoparticles/graphene composites with superior lithium storage performance, Journal of Power Sources, 2015, 281: 341-349.

    • [27] X. B. Zhong, H. Y. Wang*, Z. Z. Yang, B. Jin*, Q. C. Jiang, Facile synthesis of mesoporous ZnCo2O4 coated with polypyrrole as an anode material for lithium-ionbatteries, Journal of Power Sources, 2015, 296: 298-304.

    • [28] H. Y. Wang, B. Y. Wang, D. Wang, L. Lu, J. G. Wang*, Q. C. Jiang, Facile synthesis of hierarchical worm-like MoS2 strctures assembled with nanosheets as anode for lithium ion batteries, RSC Advances, 2015, 5: 58084-58090.

    • [29] X. Z. Ma, B. Jin*, H. Y. Wang*, J. Z. Hou, X. B. Zhong, H. H. Wang, P. M. Xin, S-TiO2 composite cathode materials for lithium/sulfur batteries, Journal of Electroanalytical Chemistry, 2015, 736: 127-131.

    • [30] D. Luo, C. H. Pei, J. Rong, H Y Wang*, Q. Li, Q. C. Jiang, Microstructure and mechanical properties of SiC particles reinforced Mg–8Al–1Sn magnesium matrix composites fabricated by powder metallurgy, Powder Metallurgy, 2015, 58(5): 349-353.