教师姓名:周承商
教师拼音名称:Zhou Cheng Shang
所在单位:粉末冶金研究院
学历:博士研究生毕业
学位:博士学位
毕业院校:University of Utah
在职信息:在职
学科:材料科学与工程
招生学科:材料科学与工程

中南大学副教授,博士生导师,2017年加入中南大学粉末冶金研究院任特聘副教授,2021-2024年受聘为美国犹他大学材料系任研究员/研究教授,2015-2016年于犹他大学从事博士后研究,2015年获美国犹他大学冶金工程博士学位,2009年获得中南大学材料学硕士学位,2006年获得武汉理工大学材料科学与工程本科学位。
近年来主持和参与了粉末冶金钛合金,钛合金增材制造、固态储氢材料等相关的国家自然科学基金、国家重点研发计划项目、湖南省自然科学基金、美国自然科学基金、美国能源部ARPA-E等科研项目。在国际顶级学术期刊发表学术论文近70余篇。论文被引数总计2800余次,论文引用H-index达到31。担任Advanced Materials, Nano Energy, Acta Materialia, Materials & Design, Scientific Report, International Journal of Hydrogen Energy等国际期刊的邀请审稿人。申请发明专利30余项,其中PCT或美国发明专利4项。获中国国家优秀自费留学生奖,盖尔-卡特勒能源奖(Garr Cutler Energy Prize)。
目前研究兴趣包括:
(1)固态储氢材料与金属氢化物功能材料
(2)钛合金增材制造与智能复合材料
(3)高性能金属粉末制备与粉末冶金新技术
欢迎对上述研究方向感兴趣的同学加入课题组!

›国家自然科学基金面上项目-增材制造异构钛合金组织调控及强韧化机理,立项时间:2025-01-01
›粉末冶金全国重点实验室自主课题-深度学习对宏量粉末体的形态识别及工艺性能预测,立项时间:2025-01-01
›中南大学创新驱动青年人才项目,立项时间:2020-01-01
›粉末冶金国家重点实验室自主课题-增材制造钛合金的约束氢处理方法及其致密化机理研究,立项时间:2021-01-01
›粉末冶金国家重点实验室自主课题-氢等离子体直接还原难熔高熵合金可控制备新技术,立项时间:2024-01-01
›国家自然科学基金委:国家自然科学基金青年基金-用于高温蓄热系统的镁基氢化物变温循环催化机理研究(51704336),周承商,开始日期:2018-01-01,结项时间:2020-12-31.
›湖南省自然科学基金:湖南省自然科学基金-微尺度石墨烯网络改性金属氢化物的储热性能研究,立项时间:2018-01-01

›The hydrogen storage properties of TiFe0.85Mn0.05 alloys synthesized via sintering and melting routes.Journal of Alloys and Compounds
›基于月壤资源利用的粉末冶金构件制备技术分析与展望.中南大学学报(自然科学版)
›Ti-6Al-4V Powder with Extra Low Interstitial Element Fabricated Using Plasma Spheroidization and Hydrogen-assisted Magnesium Deoxidation.Chemical Physical Letter
›Effect of Geometry on Microstructure in Ti-6Al-4V Fabricated by Laser Powder Bed Fusion.Materials
›Microstructure and properties of self-propagating high-temperature synthesized (Ti, W)C carbides.International Journal of Refractory Metals and Hard Materials
›Surface Diffusion-Controlled Jonhson-Mehl-Avrami-Kolmogorov Model for Hydrogenation of Mg-based Alloys.The Journal of Physical Chemistry C
›An overview of TiFe alloys for hydrogen storage: Structure, processes, properties, and applications.Journal of Energy Storage
›The mechanistic role of Ti4Fe2O1-x phases in the activation of TiFe alloys for hydrogen storage.International Journal of Hydrogen Energy
›Effect of oxygen addition on phase composition and activation properties of TiFe alloy.International Journal of Hydrogen Energy
›TiVNb-based high entropy alloys as catalysts for enhanced hydrogen storage in nanostructured MgH2.Journal of Materials Chemistry A
›The role of oxide in hydrogen absorption and desorption kinetics of MgH2-based material.Journal of Alloys and Compounds
›Hydrogen storage properties of Ti-Fe-Zr-Mn-Nb alloys.Journal of Alloys and Compounds
›The effects of crystalline defects on hydrogen absorption kinetics of catalyzed MgH2 at ambient conditions.Journal of Alloys and Compounds
›Enhancing antioxidant properties of hydrogen storage alloys using PMMA coating.International Journal of Hydrogen Energy
›Effect of oxygen on the hydrogen storage properties of TiFe alloys.Journal of Energy Storage
›In situ formation of nanocrystalline MgH2 through room temperature hydrogenation.Materials & Design
›A Novel Method for Densification of Titanium Using Hydrogenation-Induced Expansion under Constrained Conditions.Scripta Materialia
›Effect of Driving Force on the Activation Energies for Dehydrogenation and Hydrogenation of Catalyzed MgH2.International Journal of Hydrogen Energy
›Chengshang Zhou*, Yunhe Gao, Robert C. Bowman, Jr., Jingxi Zhang, Huang Liu, Pei Sun, Zhigang Zak Fang.A High Throughput Dynamic Method for Characterizing Thermodynamic Properties of Catalyzed Magnesium Hydrides by Thermogravimetric Analysis.Physical Chemistry Chemical Physics, 2021, 23: 15374 – 15383.
›周承商, 黄通文, 刘煌, 刘咏.混氢天然气输氢技术研究进展.中南大学学报(自然科学版), 2021, 52 (1) : 31-43.
›Chengshang Zhou*, Jingxi Zhang, Robert C. Bowman, Jr., Zhigang Zak Fang.Roles of Ti-Based Catalysts on Magnesium Hydride and Its Hydrogen Storage Properties.Inorganics
›Zhaoqiang Tan, Qing Zhang, Xueyi Guo, Weijiang Zhao, Chengshang Zhou*, Yong Liu*.New development of powder metallurgy in automotive industry.Journal of Central South University, 2020, 27 (6) : 1611-1623.
›Fangrui Lin, Zhixing Chen, Bin Liu, Yong Liu*, Chengshang Zhou*.Microstructure and mechanical properties of iron-containing titanium metal-metal composites.International Journal of Refractory Metals and Hard Materials, 2020, 90: 105225.
›Huang Liu, Pei Sun, Robert C. Bowman Jr., Zhigang Zak Fang, Yong Liu, Chengshang Zhou*.Effect of air exposure on hydrogen storage properties of catalyzed magnesium hydride.Journal of Power Sources, 2020, 454 (1) : 227936.
›Y, Hong Wu, Huang Liu, Pei Sun, Lei Xu, Jun Lu, Zhigang Zak Fang*, Robert C Bowman, Chengshang Zhou*.Amorphous TiCu-based Additives for Improving Hydrogen Storage Properties of Magnesium Hydride.ACS Applied Materials & Interfaces, 11 (42) : 38868-38879.
›Chai Ren, Jun Lu, Robert C Bowman Jr, Zhigang Zak Fang*, Chengshang Zhou*, Jingzhu Li.Isothermal Hydrogenation Kinetics of Ball-Milled Nano-Catalyzed Magnesium Hydride[J].Materialia, 5: 100227.
›Chengshang Zhou*, Zhigang Zak Fang, Pei Sun, Lei Xu, Yong Liu.Capturing low-pressure hydrogen using VTiCr catalyzed magnesium hydride[J].Journal of Power Sources, 2019, 413: 139-147.
›Yong Liu*., Chengshang Zhou*, Jingwen Qiu, Cheng Qian, Kun Li, Liuliu Han.Wear Behavior of light-weight and High Strength Fe-Mn-Ni-Al Matrix Self-lubricating Steels[J].Journal of Materials Science & Technology, 2018
›Yuandong Peng, Jianhong Yi, Jia Wang, Liya Li*, Chengshang Zhou.A Novel Approach for Fabrication of Functionally Graded W/Cu Composites via Microwave Processing.Journal of Alloys and Compounds, 2018
›et al, Xiaopeng Liang, Bin Liu, Min Song, Wenqian Wu, Siqin Li, Chengshang Zhou, Yong Liu*, Rui Zhou.Microstructures and Mechanical Properties of C-containing FeCoCrNi High-entropy Alloy Fabricated by Selective Laser Melting.Intermetallics, 2017
›Kaiyang Li, Bin Liu, Yong Liu*, Chengshang Zhou*, Shenghang Xu.Microstructure and Mechanical Properties of Ti-15Mo-xTiC Composites Fabricated by in-situ Reactive Sintering and Hot Swaging[J].Journal of Alloys and Compounds
›Xiaoyi Zhang, Jun Lu, Zhigang Zak Fang, Chengshang Zhou.Thermodynamic and Kinetic Destabilization of Magnesium Hydride Using Mg–In Solid Solution Alloys[J].Journal of American Chemistry Society, 2013, 135 (30) : 10982–10985.
›Pei Sun, Zhigang Zak Fang, Chengshang Zhou.An Experimental Survey of Additives for Improving Dehydrogenation Properties of Magnesium Hydride.Journal of Power Sources, 278 (15) : 38-42.
›Robert C. Bowman, Zhigang Zak Fang, Chengshang Zhou.Stability of Catalyzed Magnesium Hydride Nano-Crystalline During Hydrogen Cycling. Part I: Kinetic Analysis.The Journal of Physical Chemistry C, 2015, 119 (39) : 22261-22271.
›Yang Ren, Xiangyi Luo, Jun Lu, Yang Xia, Robert C. Bowman, Zhigang Zak Fang, Chengshang Zhou.Stability of Catalyzed Magnesium Hydride Nano-Crystalline During Hydrogen Cycling. Part II: Microstructure Evolution.The Journal of Physical Chemistry C, 2015, 119 (39) : 22272-22280.
›Xiaoyi, Yang Ren, Peng Fan, Chai Ren, Xiangyi Luo, Jun Lu, Zhigang Zak Fang, Chengshang Zhou.Thermodynamic Destabilization of Magnesium Hydride Using Mg-based Solid Solution Alloys.The Journal of Physical Chemistry C, 2014, 118 (22) : 11526-11535.
›Jun Lu, Jingzhu Li, Chai Ren, Zhigang Zak Fang, Chengshang Zhou.Effect of Ti Intermetallic Catalysts on Hydrogen Storage Properties of Magnesium Hydride.The Journal of Physical Chemistry C, 2013, 117 (25) : 12973–12980.
›Zhe Huang, Chengshang Zhou, Yang Xia, Tuoyang Zhang, Pei Sun, Zhigang Zak Fang, Ying Zhang.Thermodynamic Destabilization of Ti-O Solid Solution by H2 and De-oxygenation of Ti using Mg.Journal of American Chemistry Society, 2016, 138 (22) : 6916-6919.
›Gang Chen, Liya Li, Yuandong Peng, Shudong Luo, Jianhong Yi, Chengshang Zhou.Effect of Heating Rate on The Microwave Sintered W-Ni-Fe Heavy Alloys.Journal of Alloys and Compounds, 2009, 482: 6-8.
›Shudong Luo, Jianhong Yi, Chengshang Zhou.Sintering High Tungsten Content W-Ni-Fe Heavy Alloys by Microwave Radiation.Metallurgical and Materials Transactions A, 2014, 45 (1) : 455-463.
›Justi, John J. Vajo, Robert C. Bowman, Kent S. Udell, Peng Fan, Chengshang Zhou, Zhigang Zak Fang.Metal Hydrides Based High Energy Density Thermal Battery.Journal of Alloys and Compounds, 2015, 645 (S1) : S184-S189.
›Chengshang Zhou, Ying Zhang, Yang Xia, Zhigang Zak Fang, Pei Sun.A Novel Method for Production of Spherical Ti-6Al-4V Powder for Additive Manufacturing.Powder Technology, 2016, 301: 331-335.
›Xuanhui Qu, Chengshang Zhou, Qi Wan, Ping Li, Yang Li.A Study of Metal Hydride as Novel Thermal Energy Storage Material by Using Rapid Solidification.Journal of Alloys and Compounds, 2016, 689: 641-647.
›Chengshang Zhou, Zhigang Zak Fang, Steven Kim, Kevin Mcllwrath, Brian Van Devener.Automated 3D EDS Acquisition for Spatially Resolved Elemental Characteriazation of Catalyzed MgH2 Nanostructures.Microscopy and Microanalysis, 2016, 22 (S3) : 276-277.
›Xiaoyi Zhang, Yang Ren, Jun Lu, Chengshang Zhou, Zhigang Zak Fang, Chai Ren.Hydrogen Storage Properties of Magnesium Hydride with V-based Additives.The Journal of Physical Chemistry C, 2014, 118 (38) : 21778-21784.
›Chengshang Zhou, Zhigang Zak Fang, Peng Fan, Jingzhu Li.Kinetics of isothermal hydrogenation of magnesium hydride with TiH2 additive.International Journal of Hydrogen Energy, 2014, 39 (14) : 7373-7381.
›Xiaoyi Zhang, Yang Ren, Jun Lu, Chengshang Zhou, Zhigang Zak Fang, Chai Ren.In Situ X-ray Diffraction Study of Dehydrogenation of MgH2 with Ti-Based Additives.International Journal of Hydrogen Energy, 2014, 39 (11) : 5868-5873.
›Chengshang Zhou, Shudong Luo, Jianhong Yi, Yingli Guo.Fabrication of W-Cu Composites by Microwave Infiltration.Journal of Alloys and Compounds (492) : 75–78.

›Adjustable deforming composite structure based on hydrogen-induced expansion effect and preparation method therefor
›一种利用氢致膨胀效应的可调变形复合结构及其制备方法和应用
›Method for promoting densification of metal body by utilizing metal expansion induced by hydrogen absorption
›一种基于氢化物气隙式热开关及其使用方法
›一种钛及钛合金近净成形方法及后续烧结工艺
›一种钛及钛合金表面硬化以及表面功能化处理工艺
›一种利用含钛物质吸氢膨胀促进坯体致密化的方法
›一种利用金属吸氢膨胀促进金属坯体致密化的方法
›一种钛基复合材料及其制备方法技术
›Methods of deoxygenating metals having oxygen dissolved therein in a solid solution
›Climate control system and associated methods
›一种微波烧结制备孔隙梯度金属或合金材料的方法
›一种制备高性能钨基高密度合金的微波烧结及热处理方法
›一种微波烧结制备W-Ni-Fe高密度合金的方法
›一种微波熔渗制备W-Cu合金的方法

›盖尔-卡特勒能源研究奖 (Garr Cutler Energy Prize),2014-06-01
›中国国家优秀自费留学生奖学金,2014-01-01


犹他大学 › 冶金工程系 › 博士后 › 全职
中南大学 › 粉末冶金研究院 › 副教授 › 全职

《粉末冶金材料科学与工程》编委
《Frontier of Energy Research》Associate editor
湖南省机械工程学会,理事

团队名称: 先进粉末冶金材料团队
团队介绍: 刘咏教授研究团队
