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高义民: 二级教授,博士生导师,政府特殊津贴获得者,国家科学技术奖评审专家,陕西省科学技术奖评审专家
简 历:
1989年7月硕士毕业于西安交通大学并留校任教,1995年获得西安交通大学铸造专业工学博士学位,2001年7月批准为教授,2005年6月批准为博 士生导师。现任西安交通大学材料学院副院长,主管本科生、研究生的教学管理工作;兼任陕西省铸造学会副理事长,中国机械工程学会复合材料技术委员会委员, 《铸造》、《铸造技术》、《热加工工艺》编委。
主要研究方向:
1.严酷工况下材料磨损与腐蚀行为研究:研究开发的具有我国资源特色的稀土耐热钢乙烯裂解炉管材料,经扬子石化现场运行试验,其传热效率与三烯(乙烯、丙烯、丁烯)收得率均明显优于日本久保田的专利产品,打破了长期以来国外在石油裂解炉管材料方面的技术垄断,其研究成果获得2015年教育部技术发明一等奖。
2.陶瓷颗粒增强铁基复合材料制备与性能研究:发明了具有双阴影抗磨效应的铁基表面复合材料结构及其部件铸造成形一体化技术,实现了铸造复合材料强韧性的有机配合,解决了强冲击与高应力磨损工况下耐磨部件复合层的剥落和使用寿命低的难题,为我国耐磨材料企业和产品的升级换代奠定了基础。其研究成果获得2010年国家技术发明二等奖。
科学研究及人才培养:
1. 科研项目:主持完成国家自然科学基金4项、国家863计划2项,省部省校合作产学研及企业合作项目20余项。目前主持的在研科技项目:
1)国家自然科学基金“B4C/hBN复相陶瓷的摩擦化学行为”,2013.1-2016.12,80万元;
2)国家863计划“大型钢铁基复合材料构件制备技术及规模应用”,2013.1-2016.12, 280万元,
3)广东省战略性新兴产业核心技术攻关“兼具强韧和耐磨的颗粒陶瓷增强金属基复合材料制备技术及产业化”,2012.9-2016.9,171万元。
4)广东省应用型科技研发专项“强韧耐磨耐蚀高品质特种合金材料制备技术及产业化”,2015.11- 2018.10,100万元。
5)广东省省级科技计划项目“增材制造陶瓷-金属复合框架技术开发及其在复合材料领域的应用”,2015-06-01 至 2017-08-31,45万元。
2. 科研获奖:
1)高强韧铸造耐磨材料制备技术及应用,2010年国家技术发明二等奖,第2完成人;
2)高温抗磨材料制备技术及其应用,2006年国家技术发明二等奖,第3完成人;
3)具有抗热损伤自生长膜的铁基合金制备技术及应用,2015年教育部技术发明一等奖,第1完成人;
4)金属颗粒高效集成制备技术及应用,2010年陕西省科学技术一等奖,第3完成人;
5)新型陶瓷-金属基复合材料制备技术及其产业化应用,2011年中国有色金属工业科学技术二等奖,第2完成人。
3. 发表SCI论文:近5年在Corrosion Science、Wear、Tribology International、Tribology Letters等国外知名刊物发表SCI论文60余篇,影响因子IF>3的论文6篇,IF>2的论文20篇。
近期代表论文
1)Ting Min, Yimin Gao, Li Chen, et al. Mesoscale investigation of reaction diffusion and structure evolution during Fe–Al inhibition layer formation in hot-dip galvanizing,International Journal of Heat and Mass Transfer 92 (2016) 370–380 (SCI,IF=2.383)
2)Yucheng Zhou, Yimin Gao, Shizhong Wei, et al. Preparation and characterization of Mo/Al2O3 composites. International Journal of Refractory Metals and Hard Materials. 2016, 54: 186-195 (SCI,IF=2.16)
3)Wang XX, Gao YM, Li YF, et al. Effect of yttrium on the corrosion behaviour of 09CrCuSb alloy in NaCl solution. Corrosion Science, 2014, 87:211-217 (SCI,IF=3.686)
4)Hejie Yang, Yimin Gao,Weichao Qin, Yefei Li. Microstructure and corrosion behavior of electroless Ni-P on sprayed Al-Ce coating of 3003 aluminum alloy. Surface & Coatings Technology 281 (2015) 176-183 (SCI,IF=2.374)
5)Xiuqing Li, Yimin Gao, Wu Pan, et al. Fabrication and characterization of B4C-based ceramic composites withdifferent mass fractions of hexagonal boron nitride. Ceramics International, 2015, 41(1): 27~36(SCI,IF=2.605)
6)Xiuqing Li, Yimin Gao, Wu Pan, et al.Effect of hBN content on the friction and wear characteristics of B4C-hBN ceramic composites under dry sliding condition. Ceramics International, 2015, 41(3):3918~3926(SCI,IF=2.605)
7)Xiuqing Li, Yimin Gao, Qingxia Yang, et al.Evaluation of tribological behavior of B4C-hBN ceramic composites under water-lubricated condition. Ceramics International, 2015, 41(6): 7387~7393(SCI,IF=2.605)
8)Wu Pan,Yimin Gao,Xiuqing Li. et al. Tribological Behavior of B4C/hBN Ceramic Composites Sliding Against Gray Cast Irons Without Lubrication. Tribol Lett (2015) 60:10(SCI,IF=2.088)
9)Yan, Jingbo;Gao, Yimin;Yang, Fang;Bai, Yaping;Liu, Yiheng;Yao, Caiying;Hou, Shuzeng;Liu, Guangzhu,Cyclic carburizing behavior of Al modified high Si-containing HP40 alloy Corrosion Science,67,pp 161-168(2013) (SCI,IF=3.615)
10)Ma, Lifeng;Gao, Yimin;Yan, Jingbo;Wang, Xinxin;Sun, Liang;Li, Xiuqing, Effect of pre-oxidization on the cyclic cooking and carburizing resistance of HP40 alloy:With and without yttrium modification,Corrosion Science,75,pp 193-200(2013) (SCI,IF=3.615)
11)Wang, Xinxin;Gao, Yimin;Li, Kuang;Yan, Jingbo;Li, Yefei;Feng,Jianbo, Effect of yttrium on the corrosion behavior of 09CrCuSb alloy in concentrated sulphuric acid, Corrosion Science, 69, pp 369-375 (2013) (SCI, IF=3.615)
12)Yan, Jingbo;Gao, Yimin;Shen, Yudi;Yang, Fang;Yi, Dawei;Ye, Zhaozhong;Liang, Long;Du, Yingqian, Effect of yttrium on the oxide scale adherence of pre-oxidized silicon-containing heat-resistant alloy, Corrosion Science, 53(11), pp 3588-3595(2011) (SCI, IF=3.734)
13)Yan, Jingbo;Gao, Yimin;Liang, Long;Ye, Zhaozhong;Li, Yefei;Chen, Wei;Zhang, Jianjun, Effect of yttrium on the cyclic oxidation behavior of HP40 heat-resistant steel at 1373K, Corrosion Science, 53(1), pp 329-337(2011) (SCI, IF=3.734)
14)Liang Sun; YiminGao; Bing Xiao; Yefei Li; Guoliang Wang, Anisotropic elastic and thermal properties of titanium borides by first-principles calculations, Journal of Alloys and Compounds, 579, pp 457-467(2013) (SCI, IF=2.390)
15)Xiaobo Di;Yimin Gao;Chonggao Bao;Shengqiang Ma, Thermal insulation property and service life of vacuum insulation panels with glass fiber chopped strand as core materials, Energy and Buildings 73(2014)176_183 (SCI, IF=2.679)
16)Li, Yefei;Gao,Yimin; Xiao,Bing; Min,Ting; Yang, Ying; Ma, Shengqiang; Yi, Dawei, The electronic, mechanical properties and theoretical hardness of chromium carbides by first-principles calculations, Journal of Alloys and Compounds, 509(17), pp 5242-5249(2011) (SCI, IF=2.1350)
17)Eryong Liu; Gao, Yimin; JunhongJia; YapingBai; Wenzhen Wang, Microstructure and mechanical properties of in situ NiAl-Mo2C nanocomposites prepared by hot-pressing sintering, Materials Science&Engineering A, 592(2014)201-206 (SCI, IF=2.108)
18)Li, Yefei; Gao, Yimin; Xiao, Bing; Min, Ting; Ma, Shengqiang; Yi, Dawei, Theoretical calculations on the adhesion, stability, electronic structure, and bonding of Fe/WC interface, Applied Surface Science, 257(13), pp 5671-5678(2011)(SCI, IF=2.112)
19)Yan, Jingbo; Gao, Yimin; Yang, Fang; Yao, Caiying; Ye, Zhaozhong; Yi, Dawei; Ma, Shengqiang, Effect of tungsten on the microstructure evolution and mechanical properties of yttrium modified HP40Nb alloy, Materials Science andEngineering A-Structural Material Properties Microstructure and Processing, 529, pp 361-369(2011) (SCI, IF=2.003)
20)Eryong Liu; JunhongJia; YapingBai; Wenzhen Wang; Gao, Yimin, Study on preparation and mechanical property of nanocrystallineNiAl intermetallic, Materials and Design, 53(2014)596-601 (SCI, IF=2.913)
4. 授权发明专利:近5年获国家发明专利授权18件,其中第一发明人7件:
1)一种抗高温磨损的含铝合金钢及其制备方法,ZL201310221514.5,授权公告日:2015.07.01, 第1发明人
2)一种抗高温氧化的合金钢及其制备方法,ZL201310221573.2,授权公告日:2015.08.26,第1发明人
3)一种复合材料磨辊与磨盘及其负压铸造方法,ZL200910023027.1,授权公告日:2011.06.01,第1发明人
4)复合耐磨件的预制体及用该预制体制造耐磨件的方法,ZL201010235200.7,授权公告日:2012.11.28,第1发明人
5)一种复合耐磨材料陶瓷颗粒增强体的制备方法,ZL201010235199.8,授权公告日:2012.07.04,第1发明人
6)一种复合材料预制体的制备工艺,ZL201010235201.1,授权公告日:2012.05.23,第1发明人
7)陶瓷颗粒增强复合耐磨件及其制造方法,ZL201010235198.3,授权公告日:2012.03.28,第1发明人
5. 人才培养:任职以来已培养博士研究生21人,硕士研究生50余人。