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    杨军胜

    发布时间:2022-08-29 15:52 作者: 来源:菠菜老平台集合网 访问次数:

     

    姓名:杨军胜

    电话:18672769337

    职称:副教授

    邮箱:yangjunsheng2008@163.com;

    个人基本情况

       杨军胜,湖北武汉人。中共党员、民盟盟员,菠菜老平台集合网副教授、硕导。2010-2014年,中南大学粉末冶金研究院博士学习;2014年,菠菜老平台集合网教学科研。现为湖北省塑性工程学会第七届理事。

    主要研究方向

    金属/陶瓷多孔材料的制备及其极端服役条件下的行为研究

    类石墨烯MXene的制备及电化学行为研究

    氢能源的制备及其基础研究

    金属-陶瓷共连续相耐磨材料的设计与开发

    开设课程

    材料力学、传热学、工程热力学、过程装备成套技术

    近年的科研项目、专著与论文、专利、获奖

    承担的科研项目:

    主持和参与纵向科研项目多项,主要进行多孔材料的制备及其应用研究,现主持国家自然科学基金项目1项,菠菜老平台集合网校杰出青年基金1项、校立教研项目1;参与国家自然科学基金基金项目3项。

    1.微纳结构类石墨烯MXenes相多孔材料的可控制备及析氢行为研究,国家自然科学基金,编号51704221,执行时间:2018-01-01 2020-12-31,主持,金额:26

    2. 分级多孔类石墨烯MXene纳米层间距调控及析氢构效研究,菠菜老平台集合网杰出青年基金,编号:2017J05, 执行时间:2018-01-01 2020-12-31,主持,金额:5

    3. TiAl金属间化合物多孔材料及其应用基础研究,国家杰出青年科学基金,编号:50825102,执行时间:2009-01-01 2012-12-31,参与,金额:200万元

    4. 反应合成FeAl多孔膜的孔结构特征及膜与支撑体的界面结合性能研究,国家自然科学基金,编号:51404301,执行时间:2015-01-01 2017-12-31,参与,金额:25

    5. 闭式质子交换膜燃料电池两相流动机制与水热分布特性研究,国家自然科学基金,编号:51506156,执行时间: 2016-01-01 2018-12-31,参与,金额:21

    科研成果:

    Ceramics International, Journal of Alloy and Compounds, Journal of Asian Ceramic Societies, Journal of Porous Materials, Journal of Materials Engineering and Performance, Results in physics, Materials Research Express, Corrosion Engineering Science and Technology, RSC advances,《稀有金属材料与工程》、《材料导报》、《粉末冶金材料科学与工程》和《化工新型材料》等学术期刊上发表科研论文多篇,其中SCI收录20余篇, 担任Materials Research ExpressJournal of Physics D: Applied Physics, RSC advances等期刊审稿人。

    [1] Yang J, Wen Y, Li X, et al. The influence of Al content on pore structures of porous Mo2TiAlC2 ceramics through powder metallurgy technique[J]. Journal of Asian Ceramic Societies, 2022: 1-10. (SCI)

    [2] Yang J, Fan Y, Liu Y, et al. Self-supporting porous high-entropy MAX electrode for highly active electrocatalyst H2 evolution in alkali solution[J]. Journal of Porous Materials, 2022: 1-12. (SCI)

    [3] J. Yang, Y. Wen, H. Zou, Y. Fan, C. Zhang, L. Xiong, K. Zhang, Effects of aluminum on micro-sized pore structure of porous MoAlB ceramics fabricated via reactive synthesis, Ceramics International, (2022). (SCI)

    [4] Yang J, Zou H, Chen J, et al. Reactive synthesis of porous Mo2Ti2AlC3 ceramic and its basic application properties[J]. Ceramics International, 2022. (SCI二区)

    [5] Li X, Fan Y, Liu Y, et al. Effect of Sn Content on the Pore Structures of Porous Ni-Sn Alloys Produced by Reactive Synthesis Sintering Method[J]. Journal of Materials Engineering and Performance, 2022: 1-9.

    [6] Wen Y, Yang J, Zou H, et al. Porous MoAlB ceramic via reactive synthesis: reaction mechanism, pore structure, mechanical property and high temperature oxidation behavior[J]. Results in Physics, 2022: 105878.

    [7] Wen Y, Yang J, Zou H, et al. 2D TiVCT x layered nanosheets grown on nickel foam as highly efficient electrocatalysts for the hydrogen evolution reaction[J]. RSC Advances, 2022, 12(36): 23584-23594.

    [8] Zou H, Li X, Zhang C, Yang J* et al. Reactive synthesis for porous TiVAlC ceramics by TiH2, V, Al and graphite powders[J]. Ceramics International, 2021, 47(20): 28288-28295. (SCI)

    [9] Zou H, Li X, Zhang C, Yang J* et al. Effects of Al content on pore structures of porous TiVAlC ceramics by reactive synthesis[J]. Ceramics International, 2021, 47(6): 8338-8344. (SCI二区)

    [10] Zou H, Chen J, Li X, Yang J* et al. The role of Al in the reactive synthesis of porous Mo2Ti2AlC3 ceramics[J]. Ceramics International, 2021. (SCI二区)

    [11] Li X, Yang J*, Feng X, et al. Electrochemical performance of porous Ni–Cr–Mo–Cu alloys for hydrogen evolution reactions in alkali solution[J]. Materials Research Express, 2020, 7(9): 095505. (SCI四区)

    [12] Li X, Yang J*, Hu Y, et al. Effects of Cr content on the corrosion behaviour of porous Ni–Cr–Mo–Cu alloys[J]. Corrosion Engineering, Science and Technology, 2021: 1-10. (SCI三区)

    [13] Yang J*, Zou H, Li X, et al. Effects of Cr content on the corrosion behavior of porous Ni–Cr–Mo–Cu alloys in H3PO4 solution[J]. Materials Research Express, 2021. (SCI四区)

    [14] Li X, Zhang C, Zou H, Yang J*. Porous Ni-Cr-Mo-Cu alloys fabricated by elemental powder reactive synthesis[J]. Materials Research Express, 2021. (SCI四区)

    [15] Yang J S, Ouyang H, Zhang J F, et al. Receptance-Based Dominant Eigenvalues Computation of Controlled Vibrating Systems with Multiple Time-Delays Using a Contour Integral Method[J]. Applied Sciences, 2019, 9(23): 5263. (SCI)

    [16] Yang J, Liao C, Wang J, et al. Effects of the Al content on pore structures of porous Ti3AlC2 ceramics by reactive synthesis[J]. Ceramics International, 2014, 40(3): 4643-4648. (SCI二区)

    [17] Yang J, Liao C, Wang J, et al. Reactive synthesis for porous Ti3AlC2 ceramics through TiH2, Al and graphite powders[J]. Ceramics International, 2014, 40(5): 6739-6745. (SCI二区)

    [18] Liao C, Yang J, He Y, et al. Electrochemical corrosion behavior of the carburized porous TiAl alloy[J]. Journal of Alloys and Compounds, 2015, 619: 221-227. (SCI二区)

    [19] 李喜德,刘羽祚,李彬,李菊英,熊烈强,郑晓,杨军胜*.Cr含量对NiCrMoCu多孔材料的影响及其造孔机理研究[J].稀有金属材料与工程,2021,50(5):1641~1648. (SCI四区)

    [20] 李喜德,曹德华,冯新东,张绰,邹浩然,李彬,李菊英,熊烈强,郑晓,杨军胜*.Ni-Cr-Cu三元合金电极制备及其析氢性能研究[J].稀有金属材料与工程,2021,50(8):2905~2912. (SCI四区)

    [21] 文翼,杨军胜*,张绰,邹浩然,范一权,熊列强,叶建平.Ni-Cr-Mo-Cu多孔材料的高温氧化行为研究[J/OL].中国有色金属学报:1-16[2021-09-28].http://kns.cnki.net/kcms/detail/43.1238.tg. 20210923.0453.002.html.    EI

    [22] 胡洋东,贺跃辉,李喜德,陈杰,刘羽祚,杨军胜*.Ni-Cr-Fe合金薄膜电极的制备及析氢性能[J].材料导报,2020,34(24):24074-24079.EI

    [23] 邹浩然,李喜德,张绰,刘羽祚,阳学进,贺战文,李彬,熊烈强,郑晓,杨军胜*.MXene的制备及其在析氢领域的研究进展[J/OL].化工新型材料:1-9[2022-08-29].http://kns.cnki.net/kcms/detail/11.2357.TQ.20220615.1243.038.html

    [24] 张绰,李喜德,邹浩然,刘羽祚,杨军胜*.类石墨烯MXene的制备及储氢研究进展[J].化工新型材料,2021,49(04):6-10.(中文核心)

    [25] 李喜德,熊烈强,孙亮波,刘羽祚,阳学进,李菊英,杨军胜*.类石墨烯MXene材料制备及相关性能研究现状[J].化工新型材料,2020,48(08):258-262. (中文核心)

    [26] 邹浩然,李喜德,张绰,杨军胜*,贺跃辉.Cr含量对NiCrMoCu多孔材料高温氧化行为的影响[J].粉末冶金材料科学与工程,2020,25(04):312-320. (中文核心)

    [27] 刘羽祚,李喜德,李菊英,裴后昌,杨军胜*,贺跃辉.造孔剂(NH4)2CO3和尿素含量对TiAl多孔材料性能的影响[J].粉末冶金材料科学与工程,2019,24(03):255-260. (中文核心)

    发明专利:

    [1] 杨军胜;刘羽祚;阳学进;李喜德;熊烈强. 一种Ti2AlC多孔材料及其制备方法,专利号:ZL201811484201.8