Logo
程序  
讲师

个人简介

2012年毕业于英国伯明翰大学。2012-2013年担任英国伯明翰大学化学工程学院博士后,2013-2015年北京航空航天大学材料科学与工程学院博士后。2015年入选首届中科协青年人才托举工程,先后参加了北京市科委项目、863项目、航空基金等项目。

部分学术论文 共21篇

1.Cheng X, Yuan C, Blackburn S, et al. The study of the influence of binder systems in an Y2O3 -ZrO2, facecoat material on the investment casting slurries and shells properties[J]. Journal of the European Ceramic Society, 2014, 34(12):3061-3068.
2.Cheng X, Sun X D, Yuan C, et al. An investigation of a TiAlO based refractory slurry face coat system for the investment casting of Ti-Al alloys[J]. Intermetallics, 2012, 29(29):61-69.
3.Cheng X, Yuan C, Green N R, et al. Sintering mechanisms of Yttria with different additives[J]. Ceramics International, 2013, 39(5):4791-4799.
4.Cheng X, Yuan C, Green N R, et al. Enhanced sintering properties of yttria face coat by addition of B2O3, YF3, Al2O3 and ZrO2[J]. Materials Science & Technology, 2013, 29(3):351-356.
5.ChengX, Chen Y, Green N, et al. Evaluation of the inertness of investment casting molds using both sessile drop and centrifugal casting methods[J]. Metallurgical & Materials Transactions A, 2013, 44(2):888-898.
6.Cheng X, Yuan C, Blackburn S, et al. Influence of Al2O3 concentration in yttria based face coats for investment casting Ti-45Al-2Mn-2Nb-0.2TiB alloy[J]. Materials Science and Technology, 2014, 30(14): 1758-1764.
7.Cheng X, Yuan C, Green N R, et al. The Study of the oxidation of a Ti-45Al-2Nb-2Mn-0.2B alloy in the investment casting using an Yttria face coat mould[J]. Oxidation of Metals, 2014, 81(1-2):287-298.
8.Cheng X, Yuan C, Shevchenko D, et al. The influence of mould pre-heat temperature and casting size on the interaction between a Ti-46Al-8Nb-1B alloy and the mould comprising an Al2O3, face coat[J]. Materials Chemistry & Physics, 2014, 146(3):295-302.
9. Cheng X, Yuan C, Blackburn S, et al. A comparison of the chemical inertness of two Y2O3 -Al2O3-ZrO2 and Y2O3-Al2O3 face coat materials through sessile drop and investment casting methods[J]. Metallurgical & Materials Transactions A, 2014, 45(7):3116-3124.
10.Cheng X, Yuan C, Holt G, et al. Interactions between high Nb containing TiAl alloy and yttria facecoat during investment casting[J]. Cast Metals, 2015, 28(5):283-289.
11.Cheng X, Chai L, Wu G, et al. Evaluation of interfacial interactions between Ti-6Al-4V and mold use Ti-added backup coat in investment casting[J]. Metallurgical & Materials Transactions A, 2016, 47(5):1-6.
12.Chen X, Zhang J, Chen X, Cheng X*, et al. Electron beam welding of laser additive manufacturing Ti-6.5Al-3.5Mo-1.5Zr-0.3Si titanium alloy thic plate[J]. Vacuum, 2018, 151: 116-121.
13. Li J, Cheng X*, Liu D, et al. Phase evolution of a heat-treatable aluminum alloy during laser additive manufacturing[J]. Materials Letters, 2018, 214:56-59.
14.Li Y, Cheng X*, Liu D, et al. Influence of last stage heat treatment on microstructure and mechanical properties of laser additive manufactured AF1410 steel[J]. Materials Science & Engineering A, 2018, 713:75-80.
15.Shen, M Y, Tian X J, Liu D, Tang H B, Cheng X*, Microstructure and fracture behavior of TiC particles reinforced Inconel 625 composites prepared by laser additive manufacturing[J]. Journal of Alloys and Compounds, 2018,734: 188-195.
16.Yang C, Cheng X*, Tang H, et al. Influence of microstructures and wear behaviors of the microalloyed coatings on TC11 alloy surface using laser cladding technique[J]. Surface & Coatings Technology, 2017, 337: 97-103.
17.Li J, Cheng X*, Li Z, et al. Improving the mechanical properties of Al-5Si-1Cu-Mg aluminum alloy produced by laser additive manufacturing with post-process heat treatments[J]. Materials Science and Engineering: A, 2018, 735: 408-417.
18.Li G C, Cheng X*, Tian X J. Effects of annealing temperature and cooling rate on microstructures of a novel titanium alloy Ti-6Al-2V-1.5Mo-0.5Zr-0.3Si manufactured by laser additive manufacturing[J]. Journal of Iron and Steel Research International, 2018, 25(4): 442-452.
19.Jiao Z, Fu J, Li Z, Cheng X*, et al. The spatial distribution of α phase in laser melting deposition additive manufactured Ti-10V-2Fe-3Al alloy[J]. Materials & Design, 2018, 154:108-116.
20.Jiao Z, Ma C, Fu J, Cheng X*, et al. The effects of Zr contents on microstructure and properties of laser additive manufactured Ti-6.5Al-3.5Mo-0.3Si-xZr alloys[J]. Journal of Alloys & Compounds, 2018, 745.

主要成就、奖项、荣誉

相关专家

中国工程院院士
研究领域:陈祥宝院士长期从事复合材料研究,研制了耐高温高韧性复合材料、低温固化高性能复合材料和结构吸波一体化复合材料,发展了复合材料制造过程模拟优化和自动铺放技术,提升了树脂基复合材料性能和制造技术水平,并在先进歼击机、运输机和无人机等研制中得到大量应用,有力的支撑了国内航空装备的发展。相关成果获国家技术发明二等奖2项,国家科技进步二等奖2项,国防科学技术一等奖5项,部级科技二等奖3项;授权发明专利80项;出版著(译)作11部,发表论文100多篇。
中国科学院院士长江特聘教授
研究领域:纳米碳材料的控制生长及其拉曼光谱学研究: 烯碳材料制备方法学; 烯碳纤维; 石墨炔的可控制备与应用探索; 纳米碳材料的拉曼光谱学。
长江特聘教授 国家杰出青年基金获得者
研究领域:多功能磁性材料、新能源材料的控制合成及其在纳米生物医学与能源领域的应用探索研究
长江特聘教授
研究领域:(1)低铂及非铂催化剂 (2)锂插入化合物 (3)材料模拟计算
长江特聘教授国家杰出青年基金获得者
研究领域:以小分子液晶、高分子液晶以及液晶/高分子复合材料为研究对象,围绕材料的分子结构或微观结构与其性能的关系以,在功能性液晶材料、液晶复合材料的分子设计、微结构和性能调控及其在规模化加工过程中的关键技术问题等方面进行系统的研究。 研究领域包括: (1)液晶材料的分子设计与制备; (2)汽车门窗用智能调光膜; (3)全柔性液晶显示器; (4)具有多种外场刺激响应性的液晶聚合物弹性体; (5)液晶性聚合物电解质; (6)液晶高分子/碳纤维复合材料。