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个人简介

1987年破格评为副教授;1992年评为教授;1994~1995年作为高级访问学者,在加拿大McMaster大学材料科学与工程系进行合作研究与学术交流;1996年评为博士研究生导师;1993年享受国家政府特殊津贴;申请者自1989年以来,一直从事凝固理论、晶体生长、颗粒增强金属基复合材料、燃烧合成、合金设计、固态相变、组织与性能之间的关系等方面的基础理论研究工作。作为项目负责人完成与承担了国家重点基础研究发展计划(973)子课题1项、国家自然科学基金重点与面上项目10项(其中完成重点项目1项、面上项目7项,在研面上项目2项)。发表SCI收录论文200余篇;作为第一获奖人获国家发明四等奖1项、吉林省科技进步奖(基础理论类)一等奖1项、吉林省科技进步奖(发明类)一等奖1项、吉林省科学技术发明奖一等奖1项;作为第一发明人获授权发明专利18项

研究领域

凝固理论、晶体生长、燃烧合成、合金设计、固态相变、颗粒增强金属基复合材料组织与性能

近期论文

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S.B. Jin, P. Shen, D.S. Zhou, Q.C. Jiang*(姜启川), “A Common Regularity of Stoichiometry–induced Morphology Evolution of Transition Metal Carbides, Nitrides and Diborides during Self–Propagating High–Temperature Synthesis”, Crystal Growth & Design, 2012, 12, 2814-2824. S.B. Jin, P. Shen, Y.J. Li, D.S. Zhou, Q.C. Jiang*, “Synthesis of spherical NbB2x particles by controlling the stoichiometry”, CrystEngComm,2012, 14, 1925–1928. Q.L. Lin, P. Shen*, L.L. Yang,S.B. Jin,Q.C. Jiang, Wetting of TiC by molten Al at 1123-1323 K, Acta Materiali , 2011, 59, 1898-1911. S.B. Jin, P. Shen, B.L. Zou, Q.C. Jiang*, Morphology Evolution of TiCx Grains During SHS in an Al-Ti-C System, Crystal Growth & Design, 2009, 9, 646-649. S.B. Jin, P. Shen, Q.L. Lin, L. Zhan, Q.C. Jiang*, Growth mechanism of TiCx during SHS in an Al-Ti-C system, Crystal Growth & Design, 2010, 10, 1590-1597. F. Qiu, P. Shen, Z.H. Jiang, T. Liu, Q.C. Jiang*, Strong work-hardening effect in a multiphase ZrCuAlNiO alloy, Applied Physics Letters, 2008, 92, 151912. S.B. Jin, P. Shen, D.S. Zhou, Q.C. Jiang*, “Self–propagating high–temperature synthesis of nano–TiCx particles with different shapes by using carbon nano–tube as C source”, Nanoscale Research Letters, 2011, 6, 515–521. Q.C. Jiang*, X.L. Li, H.Y. Wang, Fabrication of TiC particulate reinforced magnesium matrix composites, Scripta Materialia, 2003, 48, 713-717. H.Y. Wang, Q.C. Jiang*, X.L. Li, J.G. Wang, In situ synthesis of TiC/Mg composites in molten magnesium, Scripta Materialia, 2003, 48, 1349-1354. Q.C. Jiang*, C.L. Xu, H.Y. Wang, J.G. Wang,Y. F.Yang, Estimation of the shifting distance of the eutectic point in hypereutectic Al-Si alloys by the lever rule, Scripta Materialia, 2007, 56, 329-332. Y.J. Li, Q.C. Jiang*, Y.G. Zhao, Z.M. He, Behavior of aluminium in M2 steel,Scripta Materialia, 1997, 37, 173-177. Q.C. Jiang*, J.R. Fang, Q.F. Guan, Thermomechanical fatigue behavior of Cr-Ni-Mo cast hot work die steel, Scripta Materialia, 2001, 45, 199-204. T. Liu, P. Shen, F. Qiu, Z.F. Yin, Q.L. Lin, Q.C. Jiang*,T. Zhang, Synthesis and mechanical properties of in-situ TiC-reinforced Cu-based bulk metallic glass composites, Scripta Materialia, 2009, 60, 83-86. S.L. Shu, J.B. Lu, F. Qiu, Q.Q. Xuan, Q.C. Jiang*, Effects of alloy elements (Mg, Zn, Sn) on the microstructures and compression properties of high-volume-fraction TiCx/Al composites, Scripta Materialia, 2010, 63,1209-1211. C.L. Xu, H.Y. Wang, C. Liu, Q.C. Jiang*, Growth of octahedral primary silicon in cast hypereutectic Al-Si alloys, Crystal Growth, 2006, 291, 540-547. P. Shen, B.L. Zou, Q.C. Jiang*, Effect of TiO2 addition on the combustion synthesis in the Ti-B4C system, Journal of Materials Research, 2008, 23, 1327-1333. Y.F. Yang, H.Y. Wang, R.Y. Zhao, Y.H. Liang, Q.C. Jiang*, Reaction mechanism Self-propagating high-temperature synthesis reaction in the Ni-Ti-B4C system, Journal of Materials Research, 2008, 23, 2519-2527. Y.F. Yang, H.Y. Wang, J. Zhang, R.Y. Zhao, Y.H. Liang, Q.C.Jiang*, The lattice parameter and stoichiometry of TiCx produced in the Ti-C and Ni-Ti-C systems by self-propagating high-temperature synthesis, Journal of the American Ceramic Society, 2008, 91, 2736-2739. Y.F. Yang, H.Y. Wang, J.G. Wang, Q.C. Jiang*, Lattice parameter and stoichiometry of TiCx produced in alloyed Ti-C systems by self-propagating high-temperature synthesis, Journal of the American Ceramic Society, 2008, 91, 3813-3816. Q.C. Jiang*, B.X. Ma, H.Y. Wang, Y. Wang, Y.P. Dong, Fabrication of steel matrix composites locally reinforced with in situ TiB2-TiC particulates using self-propagating high-temperature synthesis reaction of Al-Ti-B4C system during casting, Composites A, 2006, 37, 133-138.

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