张国君
张国君
性      别: 职      称: 教育,高等学校教师,教授
籍      贯: 陕西省 西安市 现 居 地:
毕业院校: 西安交通大学 专      业: 材料学
查看更多个人信息
出生年月: 1974-06 工作单位: 西安理工大学材料科学与工程学院
邮       箱: zhangguojun@xaut.edu.cn 联系电话:
学       历: 博士

【人物简介】

  张国君,1974年6月出生,西安理工大学材料科学与工程学院教授。主要从事高性能有色金属材料的制备与强韧化、纳米多层薄膜的制备与性能表征和材料表面工程研究工作。

【研究方向】

1、高性能有色金属材料的制备与强韧化 2、纳米多层薄膜的制备与性能表征 3、材料表面工程

【研究成果】

参与的教学项目获陕西省教学成果二等奖1项,科研项目获陕西省科学技术一等奖1项、教育部科学技术发明奖一等奖1项、国家科技进步奖二等奖1项和国家科技发明二等奖1项。目前主持国家自然科学基金2项,国家“十二五”科技支撑计划项目子课题1项。

【科研项目】

  主持:   1、国家高技术研究发展计划(863)重点项目课题1项(已结题);   2、国家自然科学基金青年科学基金1项(已结题);   3、国家自然科学基金面上项目1项;   4、国家“十二五”科技支撑计划项目子课题1项;   5、国家重点基础研究发展计划(973)子课题1项;   6、校企合作项目多项。   参加:   1、国家自然科学基金面上项目1项(已结题);   2、国家高技术研究发展计划(863)项目2项(已结题)。

【论文著作】

  1、 Nanostructured high-strength molybdenum alloys with unprecedented tensile ductility, Nature Materials(IF=32.8), 12(2013)344-350(2nd Author, SCI: 120IV)   2、 Effect of Si/B ratio on the microstructure and mechanical properties of lanthanum oxide-doped Mo–Si–B alloys, Journal of Alloys and Compounds(IF=2.134), 577(2013) 217–221(1st Author, SCI:213TJ)   3、 Effects of lanthanum oxide content on mechanical properties of mechanical alloying Mo–12Si–8.5B (at.%) alloys, International Journal of Refractory Metals and Hard Materials (IF=1.750),Doi: 10.1016/j.ijrmhm.2013.07.011(1st Author, SCI源)   4、Microstructure, mechanical and tribological behavior of MoNx/SiNx multilayer coatings prepared by magnetron sputtering, Applied Surface Science(IF=2.103), 274 (2013) 231– 236 (1st Author, SCI: 139QK)   5、Microstructure and mechanical properties of lanthanum oxide-doped Mo–12Si–8.5B(at%) alloys, Journal of Alloys and Compounds(IF=2.134), Doi:10.1016/j.jallcom.2012.03.037(1st Author, SCI源)   6、Microstructure and Oxidation Resistance Behavior of Lanthanum Oxide-doped Mo-12Si-8.5B Alloys, International Journal of Refractory Metals and Hard Materials (IF=1.750),30 (2012) 6–11(1st Author, SCI: 843QX)   7、Size-dependent deformation mechanisms and strain-rate sensitivity in nanostructured Cu/X (X = Cr, Zr) multilayer films, Acta Materialia(IF=4.349), 60(2012):3677-3689(6th Author, SCI:953CL)   8、Grain-size-dependent zero-strain mechanism for twinning in copper, Physical Review B(IF=3.691), 86(2012): 064110(5th Author, SCI:992PN)   9、Enhanced mechanical properties of columnar grained-nanotwinned Cu films on compliant substrate via multilayer scheme,Materials Science and Engineering A(IF=2.319), 554(2012) 116–121(5th Author, SCI:990FL)   10、An easy way to prepare layered nanoplatelets: Fragment of nanostructured multilayers, Journal of Applied Physics(IF=2.168), 111(2012): 113519(6th Author, SCI:960PW)   11、Tailoring nanostructured Cu/Cr multilayer films with enhanced hardness and tunable modulus, Materials Science and Engineering A(IF=2.319), 543 (2012) 139–144(6th Author, SCI:932NS)   12、Mechanical properties of fcc/fcc Cu/Nb nanostructured multilayers, Materials Science and Engineering A(IF=2.319), 545 (2012) 118– 122(6th Author, SCI: 939EZ)   13、Formation of multiple twins and their strengthening effect in nanocrystalline Cu/Zr multilayer films, Materials Science and Engineering A(IF=2.319), 539 (2012) 68–73(6th Author, SCI: 915SI)   14、Tensile properties and strengthening mechanisms of Mo–Si alloy, International Journal of Refractory Metals and Hard Materials (IF=1.750),2011, 29 (5) 608–613(1st Author, SCI: 793CO)   15、The influence of silicon content on microstructure and hardness of Mo–Si alloys, International Journal of Refractory Metals and Hard Materials (IF=1.750),2011, 29 (1) 96–103(1st Author, SCI: 686BJ)   16、Length-scale-dependent deformation and fracture behavior of Cu/X (X = Nb, Zr) multilayers: The constraining effects of the ductile phase on the brittle phase, Acta Materialia(IF=4.349), 59 (2011) 7368–7379(8th Author, SCI: 839YK)   17、Microstructure, mechanical and tribological properties of Ti(C, N)/a-C gradient composite films, Thin Solid Films(IF=2.023), 2011, 519 (19) 6246–6251(2nd Author, SCI: 792DF)   18、Effect of interface bonding on the phase-transformation-aided magnetoelectric effect in ferromagnetic/ferroelectric composites, Journal of Materials Science(IF=1.471), 2011, 6(8): 2479-2487(2nd Author, SCI: 712AD)   19、Dominant factor controlling the fracture mode in nanostructured Cu/Cr multilayer films, Materials Science and Engineering A(IF=2.319), 2011, 528(6): 2982-2987(4th Author, SCI: 725KI)   20、Length scale dependent yield strength and fatigue behavior of nanocrystalline Cu thin films, Materials Science and Engineering A(IF=2.319), 528 (2011) 7774– 7780(5th Author, SCI: 824EB)   21、Influences of annealing temperature on microstructure and mechanical properties of Mo–La2O3, International Journal of Refractory Metals and Hard Materials (IF=1.750),2011, 29(4): 522-527(5th Author, SCI: 771DY)   22、Microstructural characterization of Mo–12Si–8.5B alloy subjected to diffusion annealing treatment, International Journal of Refractory Metals and Hard Materials (IF=1.750),2010, 28(3): 377-382(3rd author, SCI: 584KM)   23、Influence of mechanical failure on the magnetoelectric response of magnetostrictive/piezoelectric multiferroic composite, Journal of Materials Science(IF=1.471), 2010, 45(16): 4490-4493(3rd author, SCI: 610NN)   24、A maximum in ductility and fracture toughness in nanostructured Cu/Cr multilayer films,Scripta Materialia(IF=3.072),2010, 62(6):333-336(4th author, SCI: 562RY)   25、Scaling of the ductility with yield strength in nanostructured CuCr multilayer films,Scripta Materialia(IF=3.072),2010, 63(1):101-104(4th author, SCI: 599GK)   26、Microstructure and strengthening mechanisms of molybdenum alloy wires doped with lanthanum oxide particles,International Journal of Refractory Metals and Hard Materials (IF=1.750),2009, 27(1):173-176(1st Author, SCI: 427OY)   27、Influence of constituents on the ductile fracture of Al-Cu-Mg alloys: modulated by the aging treatment,Materials Science and Engineering A(IF=2.319),2009, 526(1):171-176(1st Author, SCI: 514AW)   28、Microstructure and tribological properties of TiN, TiC and Ti(C, N) thin films prepared by CFUBMSIP,Applied Surface Science(IF=1.895),2009, 255(21):8788-8793(1st Author, SCI: 477GF)   29、Aging-dependent coupling effect of multiple precipitates on the ductile fracture of heat-treatable aluminum alloys,Materials Science and Engineering A(IF=2.319),2009(499 A)387-395(4th author, SCI: 383VW)   30、Effect of precipitate morphology evolution on the strength toughness relationship in Al-Mg-Si alloys,Scripta Materialia(IF=3.072),2009, 60(12):1109-1112(4th author, SCI: 442AV)   31、Mechanical strength lowering in submicron Cu thin films by moderate DC current, Applied Physics A: Materials Science and Processing(IF=1.595), 2009, 97(2): 369-374(5th author, SCI: 494UQ)   32、Microstructure and mechanical properties of multi-components rare earth oxide-doped molybdenum alloys,Materials Science and Engineering A(IF=2.319),2008, 483(1):350-352(1st Author, SCI: 303WH)   33、Thickness dependent fatigue lifetime at microcrack nucleation for metal thin films adherent to flexible substrate,Journal of Physics D: Applied Physics(IF=2.083),2008 (41):195404(4th author, SCI: 351RG)   34、Heat treatment-modulated coupling effect of multi-scale second-phase particles on the ductile fracture of aged aluminum alloys,Acta Materialia(IF=4.349),55(2007): 273-284(2nd author, SCI: 358PZ)   35、Thickness dependent critical strain in submicron Cu films adherent to polymer substrate,Applied Physics Letters(IF=3.554),90(2007):161907(4th author, SCI: 118FV)   36、Coupling effect of multiple precipitates on the ductile fracture of aged Al-Mg-Si alloys,Scripta Materialia(IF=3.072),57(2007): 865-868(4th author, SCI: 208ZB)   37、Microstructure and strengthening mechanism of oxide lanthanum dispersion strengthened molybdenum alloy,Advanced Engineering Materials(IF=1.506),2004,6(12):943-948(1st Author, SCI: 888MZ)   38、The Influences of Multi-Scale Sized Second Phase Particles on Ductility of Aged Aluminum Alloys,Metallurgical and Materials Transactions A(IF=1.564),2004(35A): 1725-1734(2nd author, SCI: 823AU)   39、Modeling the strengthening response to aging process for aluminum alloys containing plate/disc or rod/needle-shaped precipitates,Materials Science & Engineering A(IF=2.319),2003(344): 113-124(2nd author, SCI: 635FX)

与TA有关的专家
姓名:
工作职务:
电力工程系副主任
研究方向:
电力系统继电保护;变电站综合自动化系统。
毕业学院:
西安交通大学
姓名:
工作职务:
研究方向:
税收理论与实务、国际税收
毕业学院:
西安交通大学
姓名:
工作职务:
研究方向:
1、获军队“育才奖”银奖。 2、获军队奖1项。
毕业学院:
西安交通大学
姓名:
工作职务:
研究方向:
1.超短脉冲激光技术及其应用。 2.新型近红外超快光纤激光器。 3.超快激光微纳加工技术。 4.微纳光学与集成光子器件。
毕业学院:
西安交通大学
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