Personal Information:

Professor


Supervisor of Doctorate Candidates


Supervisor of Master's Candidates

Date of Employment:2013-01-18

School/Department:化工学院

Education Level:With Certificate of Graduation for Doctorate Study

Gender:Male

Contact Information:13669284868

Degree:博士

Status:Employed

Profile

西北大学化工学院

教师个人简历

姓名:胡军    职称:副教授   系:过程装备与控制工程

联系电话:0086 13669284868

电子邮箱:hujun32456@163.com

微信:13669284868    出生日期:19829

 

1. 总体介绍

胡军自博士以来,一直开展化工设备的腐蚀防护研究。201610月起,入选中国博管办组织的博士后国际交流计划项目,在新加坡南洋理工大学材料学院开展博士后研究两年,主要课题为基于量子化学的材料稳定性和活性的基因工程,持续开展界面量子化学模拟和材料电化学实验的相关工作,目前以第一或者通讯作者在Journal of the American Chemical SocietyApplied Catalysis B: EnvironmentalJournal of Materials Chemistry ASmallACS Applied Materials & Interfaces等期刊发表论文50余篇,其中SCI 收录40篇,EI收录6篇。已授权发明专利18项,独立撰写专著1部;累计主持10项省部级以上项目,(包括国家自然科学基金2项,博士后基金特别资助和一等项目各1),参加多次国内国际学术会议,其中特邀报告1次,口头报告8次,获得陕西省高等学校科技进步二等奖1项,西北大学仲英青年学者。目前是中国材料与试验团体标准委员会金属腐蚀与防护领域委员会委员,渭南高新区校区合作专家智库专家中国化工学会会员(E350026941P。国际SCI期刊Journal of Renewable Materials客座编辑,Applied Catalysis B: EnvironmentalACS Applied Materials & InterfacesIonicsLangmuir; Mechanics of Materials等期刊审稿人, 国家自然科学基金评审专家,指导学生多次在国家级和省级机械设计大赛中指导学生获奖。

2. 主要研究领域:

Ø 设备的腐蚀与防护;

Ø 新型能源化工材料基因工程;

3. 教育经历:

Ø 博士,动力工程及工程热物理,西安交通大学,2008.9-2012.12

Ø 硕士,过程装备与控制工程专业,西北大学,2005.9-2008.6

Ø 本科,过程装备与控制工程专业,西北大学,2001.9-2005.6

4. 职业经历:

Ø 副教授,西北大学化工学院,日期:2016.05-至今

Ø 博士后,新加坡南洋理工大学,材料科学与技术日期:2016.10-2018.10

Ø 博士后,西北大学化学工程与技术,日期:2013.12-2019.04

Ø 讲师,西北大学化工学院,日期:2013.01-2016.05

5. 主要获奖:

Ø 20152月,获陕西省高等学校科学技术奖二等奖

Ø 201812月,西北大学 仲英青年学者

6. 主持和参与的科研项目:

[1] 聚氨酯基超疏水防腐防冰微纳米涂层,陕西省教育厅服务地方专项. 8万,日期:2020.09-2022.08主持人

[2] 复杂酸性环境下耐磨型重防腐涂料的开发,国家能源集团横向课题.  16.5万,日期:2020.05-2021.04主持人

[3] 钛合金激光熔覆区域的微观结构表征,解放军空军工程大学横向课题 2.85万, 2019.06-2019.12主持人

[4] 基于高通量量子化学计算设计高性能产氢催化剂2019JM-1294)陕西省自然科学基础研究计划一般项目(面上),3万,日期:2019.01-2020.12主持人

[5] 酸性环境下基于质子耦合电子转移的金属腐蚀动力学研究(21676216),国家自然科学基金面上项目64万,日期:2017.01-2020.12主持人

[6] 化工设备在酸性条件下加速腐蚀机理研究(SXECPI201505),省能源化工过程强化重点实验室,2万,日期:2016.01-2107.12主持人

[7] 腐蚀氧化膜电子结构及其界面上电荷转移和传递规律研究(2015T81046),博士后基金特别资助15万,日期:2015-2016主持人

[8] 原子尺度上Alloy 690腐蚀动力学机理的量子力学定量研究(51301132),国家自然基金青年项目25万,日期:2014-2016主持人

[9] 新型高效低成本太阳能化学蓄热纳米复合材料开发与应用技术(2014K08-28),陕西省工业攻关,6万,日期:2014.01-2016.12主持人

[10] Alloy 690腐蚀动力学机理的量子力学定量研究('20136101120009),教育部博士点基金,4万,日期:2014-2015主持人

[11] 镍基合金腐蚀的量子力学研究(14JK1751),陕西省教育厅专项,2万,日期:2014.07-2016.12 主持人

[12] 煤化工装备腐蚀动力学机理的量子化学定量研究(2014M550507),博士后基金一等,8万,日期:2014.07-2015.12主持人

[13] 流体机械多元课堂建设的理论与实践,西北大学教学研究与成果培育项目 2.0万,2019.01-2020.06主持人

[14] 透明泵的设计演示及性能测试(JX18146),西北大学实验教学项目, 1.2万,日期:2015.01-2015.12主持人

[15] 腐蚀裂纹扩展过程中微观-介观-宏观的多尺度关联(21576224),国家自然科学基金面上项目,65万,日期:2016.01-2019.12(第一参与人)

[16] 陕西省高校化工类主干课程信息化建设的探索与实践. 陕西省高等教育教学改革研究项目(331041653),  2016.01-2017.12, (参与人)

[17] 跨临界CO2引射制冷循环动态热力平衡的运动稳定性理论 (51076120). 国家自然科学基金面上项目,65万,日期:2011.01-2013.12(参与人)

[18] 化学吸收法高效捕集二氧化碳的多场耦合行为研究 (50976090),国家自然科学基金面上项36万,目期:2010.01-2012.12(参与人)

7. 指导学生完成的科研项目:

Ø 何世军 西北大学研究生创新基金,绿色高效缓蚀剂的开发和缓蚀剂在金属表面协同机理分析(YZZ171402018.01-2019.06,指导老师:胡军 结题评价:通过

Ø 牟坤 陕西省大学生创新项目,化工管道防腐的超疏水涂层制备及工业应用S2019106973122019.09-2020.09,指导老师:胡军 在研

Ø 王迪 陕西省大学生创新项目,易钝化金属腐蚀过程中所形成氧化膜的量子化学表征”2014.01-2015.12,指导老师:胡军, 结题评价:优秀

8. 指导的学生获奖

Ø 2016 王祯,何世军,王甜甜,王超明. 全国第七届过程装备创新与实践大赛全国三等奖:湿法过滤型空气净化器系统及净化方法, 指导老师:胡军

Ø 2016 刘晨,梁拓,王磊,徐子豪,刘道猛. 空工杯 第七届全国大学生机械创新设计大赛三等奖:货车商品自动装卸装置; 指导老师:魏利平 胡军

Ø 2016 王剑轩,汪帆,王敏,王昕悦、李田田. 空工杯 第七届全国大学生机械创新设计大赛三等奖:运载重物上楼助力装置; 指导老师:魏利平 胡军

Ø 2018 薛文博等. 第八届全国大学生机械创新设计大赛三等奖:旋转升降式小区停车装置;指导老师:胡军 魏利平

Ø 2019 牟坤 马焘 王彤 曹晓飞 中国大学生机械工程创新创意大赛第十届过程装备实践与创新大赛全国三等奖:新型超疏水材料的研发工艺及应用, 指导老师:胡军

Ø 2020 石佳坤,宋卫兵,古玉宽,曹晓飞,王心鑫,袁博韬,李智杰. 西北大学2019创青春大学生创业大赛优秀奖保护伞”——透明疏水微纳复合膜的开发与应用, 指导老师:胡军 周少荷

9. 著作:

J. Hu“Application of the Cellular Automata in pitting corrosive process”LAP LAMBERT Academic Publishing; Page:1-46, 2018Word : 8116.

 

10. 第一或通讯作者发表论文 (+代表共同第一作者,*代表通讯作者)

[1] Q. Guo, J. Mao, J. Huang*, Z. Wang, Y. Zhang, J. Hu*, J. Dong, S. Sathasivam, Y. Zhao, G. Xing, H. Pan, Y. Lai*, Y. Tang*, Reducing oxygen evolution reaction overpotential in cobalt-based electrocatalysts via optimizing the "microparticles-in-spider web" electrode configurations, Small 16 (2020) 1907029. (封面插页)(SCI:一区, IF=10.856)

[2] X. Zhao, Z. Zhang, X. Cao, J. Hu*, X.H. Wu, A.Y.R. Ng, G.P. Lu, Z. Chen*, Elucidating the sources of activity and stability of FeP electrocatalyst for hydrogen evolution reactions in acidic and alkaline media. Applied Catalysis B: Environmental 260 (2020) 118156. (SCI:一区, IF=14.229)

[3] X.F. Cao, X. Zhao, J. Hu*, Z. Chen*. First-principles investigation of electronic properties of Bi2O4 (101)/BiVO4 (010) heterojunction towards more efficient solar water splitting. Physical Chemistry Chemical Physics 22 (2020) 2449 - 2456. (SCI:, IF=3.567)

[4] Z. Xing, J. Hu+, M. Ma+, H. Lin, Y.M. An, Z.H. Liu, Y. Zhang, J.Y. Li*, S.H. Yang*, From one to two: In-situ construction of an ultrathin 2D-2D closely-bonded heterojunction from a single-phase monolayer nanosheet. Journal of the American Chemical Society 141 (2019) 19715-19727. (SCI:一区, IF=14.357)

[5] J. Hu, X. Zhao, W. Chen, S.L. Zhang, Z. Chen*, Mechanistic study of monolayer NiP2 (100) towards solar hydrogen production. Solar RRL (2019) 1900360. (暂无分区数据)

[6] W. Chen, S.C. Wu, Z.J. Xia, G.B. Huang*, J. Hu*, Mesoporous g-C3N4 ultrathin nanosheets coupled with QDs self-decorated SnIn4S8 homojunctions towards highly efficient photocatalytic functional transformation. Journal of Alloys and Compounds 809 (2019) 151859. (SCI:二区,IF=4.175)

[7] S.L. Zheng, D.A. Bellido-Aguilar, J. Hu*, Y.J. Huang, X. Zhao, Z. Wang, X.T. Zeng, Q.C. Zhang, Z. Chen*, Waterborne bio-based epoxy coatings for the corrosion protection of metallic substrates. Progress in Organic Coatings 136 (2019) 105265. (SCI:二区, IF=3.42)

[8] J. Hu, X.F. Cao, X. Zhao, W. Chen, G.P. Lu, Y. Dan, Z. Chen*, Catalytically active sites on Ni5P4 for efficient hydrogen evolution reaction from atomic scale calculation. Frontiers in Chemistry 7 (2019) 444. (SCI:二区, IF=3.782)

[9] J. Hu, S. Zhao, X. Zhao, Z. Chen*, Strategies of anode materials design towards improved photoelectrochemical water splitting efficiency. Coatings 9 (2019) 309. (SCI:三区, IF=2.33)

[10] J. Hu*, Z. Wang, T.T. Wang, P.Y. Xu, N. Li*, Investigation on the synergy mechanism of mixed inhibitors-Mannich base and Na2WO4 on Fe surface by molecules dynamic simulation. Molecular Simulation 45 (2019) 927-934. (SCI:四区, IF=1.782)

[11] J. Hu, W. Chen+, X. Zhao*, X.F. Cao, J.B. Zhu, Z. Chen*, Stable active sites on Ni12P5 surfaces for the hydrogen evolution reaction. Energy Technology 7 (2019) 1900013. (SCI:二区, IF=3.163)

[12] Z. Wang, T.T. Wang, J.B. Zhu, L.P. Wei, Y.Z. Shen*, N. Li, J. Hu*, Synergistic effect and mechanism of copper corrosion inhibition using cinnamaldehyde and vanillin in HCl solution: An experimental and theoretical approach. Colloids and Surfaces A: Physicochemical and Engineering Aspects 563 (2019) 246-254. (SCI:三区, IF=3.131)

[13] J. Hu*, S.J. He, Z. Wang, J.B. Zhu, L.P. Wei, Z. Chen*, Stearic acid-coated superhydrophobic Fe2O3/Fe3O4 composite film on N80 steel for corrosion protection. Surface and Coating Technology 359 (2019) 47-54.

[14] 王赟, 胡军*, 王甜甜, 郑茂盛. 曼尼希碱/钨酸钠复配对N80钢缓蚀的协同作用. 材料工程. 2019, 47(02): 122-128. (EI)

[15] J. Hu, S.L. Zheng, X. Zhao*, X. Yao, Z. Chen*, A theoretical study on the surface and interfacial properties of Ni3P for hydrogen evolution reaction. Journal of Materials Chemistry A 6 (2018) 7827-7834. (SCI:一区, IF=10.733)

[16] J. Hu, W. Chen, X. Zhao, H.B. Su*, Z. Chen*, Anisotropic electronic characteristics, adsorption, and stability of low-index BiVO4 surfaces for photoelectrochemical applications. ACS Applied Materials & Interfaces 10 (2018) 5475-5484. (SCI:一区, IF=8.456).

[17] X. Zhao, J. Hu+, B. Wu, A. Banerjee, S. Chakraborty*, J.Y. Feng, Z.Y. Zhao, S. Chen, R. Ahuja, T.C. Sum*, Z. Chen*, Simultaneous enhancement in charge separation and onset potential for water oxidation in BiVO4 photoanode by W-Ti codoping. Journal of Materials Chemistry A 6 (2018) 16965-16974.(SCI:一区, IF=10.733)

[18] X. Zhao, J. Hu+*, S. Chen, Z. Chen*, An investiagtion on the role of W doping in BiVO4 photoanodes used for solar water splitting. Physical Chemistry Chemical Physics 20 (2018) 13637-13645. (SCI:二区, IF=3.567)

[19] S.J. He, Z. Wang, J. Hu*, J.B. Zhu, L.P. Wei, Z. Chen*, Formation of superhydrophobic micro-nanostructured iron oxide for corrosion protection of N80 steel. MaterialsDesign 160 (2018) 84-94. (SCI:二区, IF=5.77)

[20] X. Zhao, J. Hu+*, X. Yao, S. Chen, Z. Chen*, Clarifying the roles of oxygen vacancy in W-doped BiVO4 for solar water splitting. ACS Applied Energy Materials 1 (2018) 3410–3419. (暂无分区数据)

[21] J. Hu, X. Zhao*, W. Chen, Z. Chen*, Enhanced charge transport and increased active sites on α-Fe2O3 (110) nanorod surface containing oxygen vacancies for improved solar water oxidation performance. ACS Omega 3 (2018) 14973-14980. (SCI:三区, IF=2.584

[22] J. Hu*, T.T. Wang, Z. Wang, L.P. Wei, J.B. Zhu, M.S. Zheng, Z. Chen*, Corrosion protection of N80 steel in hydrochloric acid medium using mixed C15H15NO and Na2WO4 inhibitors. Coatings 8 (2018) 315. (SCI:三区, IF=2.33)

[23] J. Hu*, S.J. He, Y.Z. Zhang, H.X. Ma, X.L. Zhang, Z. Chen*, Theoretical insights into the solvent polarity effect on quality of self-assembled n-octadecanethiol monolayers on Cu (111) surface. Molecules 23 (2018) 733. (SCI:三区, IF=3.06)

[24] J. Hu*, C.M. Wang, S.J. He, J.B. Zhu, L.P. Wei, S.L. Zheng*, A DFT-Based model on the adsorption behavior of H2O, H+, Cl-, and OH- on clean and Cr-doped Fe(110) planes. Coatings 8 (2018) 51. (SCI:三区, IF=2.33

[25] J. Hu, X. Zhao, W. Chen, H.B. Su*, Z. Chen*, Theoretical insight into the mechanism of photoelectrochemical oxygen evolution reaction on BiVO4 anode with oxygen vacancy. Journal of Physical Chemistry C 121 (2017) 18702-18709. (SCI:二区, IF=4.309)

[26] X.Y. Fan, C.M. Wang, J. Hu*, Theoretical insights into the role of water molecule in the aqueous/Cu(111) interface during corrosion pathway. Journal of New Materials for Electrochemical Systems 19 (2016) 235-240. (SCI:四区, IF=0.4)

[27] Y. Wang, J. Hu*, Y.Q. Wang, L.J. Yu, A new method for preventing corrosion failure: Thiourea and hexamethylenetetramine as inhibitor for copper. Bulletin of the Korean Chemical Society 37 (2016) 1797-1811. (SCI:四区, IF=0.602)

[28] X. Zhang, J. Hu*, Y.Q. Wang, M.S. Zheng, Z.X. Zhang, Simulation of pitting corrosion for Ni-based alloy using a cellular automata model. Rare Metal Materials and Engineering 44 (2015) 2347-2352. (SCI:四区, IF=0.381)

[29] J. Hu, Y.Y. Tian, H.P. Teng, L.J. Yu, M.S. Zheng*, The probabilistic life time prediction model of oil pipeline due to local corrosion crack. Theoretical and Applied Fracture Mechanics 70 (2014) 10-18. (SCI:三区, IF=2.848).

[30] J. Hu, Q. Duan, G.X. Cheng, Z.X. Zhang*, X.D. Chen, B. Wang, Investigation of the impedance characteristics in the pitting evolutionary process of Alloy 690. Annals of Nuclear Energy 58 (2013) 25-32. (SCI:四区, IF=1.38).

[31] 胡军, 马登龙, 段 权, 胡海军, 程光旭, 张早校*. 镍基合金腐蚀极化曲线的量子力学解释. 稀有金属材料与工程. 43 (2013) 1173-1176. (SCI:四区, IF=0.381)

[32] J. Hu, F. Liu, Q. Duan, G.X. Cheng, Z.X. Zhang*, Failure analysis based on J-integral values: A case study of hydrogen blistering defect. Engineering Failure Analysis 18 (2013) 924–932, (SCI:三区, IF=2.203).

[33] J. Hu, F. Liu, Q. Duan, Z.X. Zhang*, Determination of the critical crack length for steam generator tubing based on fracture-mechanics-based method. Annals of Nuclear Energy 38 (2011) 1900-1905. (SCI:四区, IF=1.38).

[34] J. Hu, F. Liu, G.X. Cheng, Z.X. Zhang*, Life prediction of steam generator tubing due to stress corrosion crack using Monte Carlo Simulation. Nuclear Engineering and Design 241 (2011) 4289–4298. (SCI:四区, IF=1.541)

[35] J. Hu*, C.M. Wang, Y.Q. Wang, L.J. Yu, X.X. Ma, Investigation on the interaction between CuO and corrosion inhibitor including Cl- by using Molecular dynamics. Materials Science and Engineering 19 (2015) 331-335. (EI)

[36] J. Hu*, S.M. Sun, L.J. Yu, M.S. Zheng, Synthesis of nanocomposite CaxZny(OH)2(x + y) as thermochemical storage material. Nanomaterials and Energy 4 (2015) 124-130. (EI)

[37] J. Hu*, Y. Wang, L.J. Yu, Y.Q. Zou, Y.Q. Wang, An investigation of a combined thiourea and hexamethylenetetramine as inhibitors for corrosion of N80 in 15% HCl solution: Electrochemical experiments and quantum chemical calculation. International Journal of Corrosion 2015 548031. (EI)

[38] 胡军*, 王赟, 余历军, 郑茂盛, 赵渊. 硫酸银对氯离子环境下Alloy690缓蚀特性的电化学分析. 化工学报. 2014, 65(10), 4032-4038. (EI)

[39] 胡军,刘菲,张早校*, 程光旭. 利用Abaqus对含氢鼓包缺陷的液化气罐进行安全分析. 西安交通大学学报. 2010, 44(9): 38-42. (EI)

[40] 薛文博,何世军,陈乾文,胡军*,郑茂盛. 温度载荷中磷酸氢二钠和硫酸钠相变蓄热材料对卧式储罐保温效果的影响. 化工机械. 2018, 45(04): 438-441+494.

[41] 胡军*, 王祯, 王甜甜,何世军,樊安. 一种曼尼希碱和钨酸钠复配缓蚀剂的新机理. 化工机械, 2018, 45(01): 109-113.

[42] 胡军*, 王甜甜, 王祯等. 盐酸介质中复配缓蚀剂对N80钢缓蚀效果分析研究. 石油化工设备. 2017, 46(6): 1-7.

[43] 王甜甜, 王祯, 王赟, 胡军*. N80表面膜结构的XPS定量分析. 化工机械. 2016, 43(5): 597-601.

[44] 王祯,胡军*,王超明,王赟,余历军. 曼尼希碱和钨酸钠溶液与铜的分子动力学模拟. 化工机械. 2015, 42(6): 824-827.

[45] 王超明,胡军*,郑茂盛,余历军. 腐蚀介质在金属表面扩散行为的分子动力学研究. 化工机械. 2015, 42(5): 658-661.

[46] 王赟,胡军*,王迪,王超明. 基于量子力学和Mott-Schottky研究Alloy 690氧化膜的半导体特性. 化工机械, 2015, 42(4): 493-497.

[47] 王迪,王赟,曹恒,胡军*. NaCl溶液中BTACu腐蚀的缓蚀机理. 中国科技论文. 2015, 10(6): 663-668.

[48] 胡军*,孙世敏, 郑茂盛, 滕海鹏, 赵渊, 余历军. 共沉淀法制备膨胀石墨基CaxZny(OH)2(x+y)太阳能化学蓄热复合材料. 科学通报. 2014, 59(3): 267-272.

[49] 王磊, 胡军*, 郑茂盛. 氯离子对典型不锈钢材料腐蚀的EIS分析. 化工机械. 201441(1): 51-55.

11. 参与论文:

[1] X. Yao, X. Zhao, J. Hu, H.Q. Xie, D.P. Wang, X. Cao, Z. Zhang, Y.Z. Huang, Z. Chen, T. Sritharan, The self-passivation mechanisms in degradation of BiVO4 photoanode. iScience  19 (2019) 976-985. Cell 子刊)

[2] K.L. He, J. Xie, Z.Q. Liu, N. Li*, X.B. Chen, J. Hu, X. Li*, Multi-functional Ni3C cocatalyst/g-C3N4 nanoheterojunctions for robust photocatalytic H2 evolution under visible light. Journal of Materials Chemistry A 6 (2018) 13110-13122. (SCI:一区, IF=10.733)

[3] D.L. Ma*, W. Tan, Z.X. Zhang*, X.Q. Wang, J. Hu, Recognition of leak CO2 with wavelet analysis based on correlation monitoring between CO2 and O2 in atmosphere. Process Safety and Environmental Protection, 114 (2018) 64-78. (SCI:三区, IF=4.384)

[4] D.L. Ma, W. Tan, Z.X Zhang*, J. Hu, Parameter identification for continuous point emission source based on Tikhonov regularization method coupled with particle swarm optimization algorithm. Journal of Hazardous Materials 325 (2017) 239-250. (SCI:一区, IF=7.65)

[5] L.P. Wei*, Y.J. Lu, G.D. Jiang, J. Hu, J.B. Zhu, Unsteady-state bubble dynamic wave velocity of gas–solid bubbling fluidized bed. Chemical Engineering Research and Design 126 (2019) 255-264. (SCI:三区, IF=3.073)

[6] J.B. Zhu, L.P. Wei, J. Hu, C.T. Xue, Anchoring iron oxide nanoparticles on polypyrrole/rGO derived nitrogen-doped carbon as lithium-ion battery anode. Journal of Alloys and Compounds 723 (2017) 729-735. (SCI:二区,IF=4.175)

[7] J.B. Zhu*, T.Y. Feng, X.F. Du*, J.P. Wang, J. Hu, L.P. Wei, High performance asymmetric supercapacitor based on polypyrrole/graphene composite and its derived nitrogen-doped carbon nano-sheets. Journal of Power Sources 346 (2017) 120-127. (SCI:一区, IF=7.467)

[8] Y.Z. Zhang, J. Zhou, X.L. Han, X.L. Zhang*, J. Hu, Kinetics behavior of long-chain n-alkanethiols adsorbed on copper surface. Applied Surface Science 353 (2015) 979–985. (SCI:二区, IF=5.155)

[9] Y.Z. Zhang, J. Zhou, X.L. Zhang*, J. Hu, H. Gao, Solvent polarity effect on quality of n-octadecanethiol self-assembledmonolayers on copper and oxidized copper. Applied Surface Science 320 (2014) 200–206. (SCI:二区, IF=5.155)

[10] 艾波,胡军,程光旭,张早校基于GA-BP算法的含缺陷蒸汽发生器传热管的爆破压力预测. 西安交通大学学报, 2011, 45(9): 84-89. (EI)

12. 参会情况:

[1] 胡军. 第十届全国腐蚀大会, 2019 十月 23-25. 江西 南昌

[2] 胡军. 第四届中国石油石化腐蚀与防护技术交流大会暨石油石化腐蚀与防护专家论坛,2019 九月,9-11 上海

[3] 胡军,曹晓飞. 第一届耐蚀钢及冶金新技术学术会议,2019 九月,2-5 南京,江苏

[4] 胡军,何世军, N80表面复合超疏水表面构建及其在防腐领域的应用。第十六届全国高等学校过程装备与控制工程专业教学科研校际交流会,2019, 七月, 26-29 兰州,中国.

[5] Shijun He, Xiaofei Cao, Jun Hu. Fabrication of superhydrophobic Fe2O3/Fe3O4 composite surface on N80 steel. 2nd International Conference on Manufacturing Technology, Materials and Chemical Engineering. 2019, June 14-16, Wuhan, China 口头汇报(EI:)

[6] J. Hu, X. Zhao, W. Chen, H. B. Su, Z. Chen Mechanism of Photoelectrochemical Oxygen Evolution Reaction on BiVO4 Anode with Oxygen Vacancy. The organizing committee of Global Workshop on Functional Materials and Devices (GW-FMD) 2018, January 11-13, Singapore. Invited speaker (邀请报告).

[7] Jun Hu, Caoming Wang, Tiantian Wang, Maosheng Zheng, Xxiaoxun MaDensity Functional Theory analysis of Chromium Doped on Fe(001) Plane five typical corrosive particles. 2nd International conference on new energy and renewable resources. 2017 June 24-25, Guangzhou, China,口头报告

[8] Ma D.L., Tan W., Zhang Z.X. Hu Jun. Gas emission source term estimation with 1-step nonlinear partial swarm optimization-Tikhonov regularization hybrid method, Chinese Journal of Chemical Engineering • August 2017,口头报告

[9] Zhen Wang, Jun Hu, Yun Wang, Caoming Wang, Tiantian Wang. Investigate on the synery mechanism of mannich base and Sodium Tungstate as mixed Inhibitor by analyzing Diffusion Coefficient. International corrosion engineering conference 2016, Aug. 08-11, Beijing China, 口头报告

[10] Jun Hu, C.M. Wang,Y.Q. Wang, L.J. Yu, X.X. Ma investigation on the interaction between CuO and corrosion inhibitor including Cl- by using Molecular dynamics. 2nd International Workshop on Material Science and Engineering. 2015 Aug. 07-09, Guangzhou, China口头报告

[11] Jun Hu, Ming Shuai, Haipeng Teng, Lijun Yu, Maosheng Zheng. Investigation of the corrosion characteristics of Alloy 690 by using electrochemical method. International Conference on Pipelines and Trenchless Technology. 2013: 899-905. 2013 October 16-18. Xi`an, China. 口头报告

[12] Jun Hu, Guangxu Cheng, Zaoxiao Zhang. Life Prediction of Alloy 600 due to Pitting Corrosion[C]. The 13th International Conference on Pressure Vessel Technology (ICPVT-13) in London, UK, May 20-23, 2012. 口头报告

[13] Jun Hu, Li-wei Yan, Fei Liu, Quan Duan, Zaoxiao Zhang*. Reliability-based structural integrity assessment of liquefied natural gas tank with hydrogen blistering defects by MCS method. ICNC‘10-FSKD’10, August 10-12, 4194-4198, in Yantai, China. 2010. (EI: 20104613375925ISTP: 11554664IEEE: ) 口头报告

[14] 胡军,滕海鹏,郑茂盛*,余历军,赵渊. 一种新型改型聚氨酯/环氧树脂复合防腐涂料. 第六届石油天然气管道安全国际会议暨第六届天燃气管道技术研讨会, 2013, (5): 198-200.

[15] 胡军,刘菲,艾波,程光旭,张早校.基于多尺度的点蚀演化过程研究[C]. 2011.08 417-419. 12届过程装备与控制工程年会

[16] 胡军,刘菲,艾波,程光旭,段权,张早校.超超临界机组主蒸汽传热管局部腐蚀寿命预测[C]. 中国动力工程学会超超临界机组技术交流2011年会 2011127-9日 汕头. 口头报告

13. 授权的国家发明专利

[1] 胡军,何世军,曹晓飞,王祯. 一种高抗水耐蚀的三维纳米结构钢板膜的制备方法 授权, 2020/06/03  中国产权局,ZL 201810938667.4

[2] 胡军王甜甜 一种纳米状复合CdVO4-CdS光催化剂的制备和应用 授权, 2020/03/10 中国产权局,ZL 201710504306.4

[3] 薛文博,田嘉豪,陈永利,胡军. 可拓展式旋转升降立体车库, 授权, 2019/12/17 中国产权局,ZL 201810114115.1

[4] 胡军,薛文博,王祯,王甜甜,马晓迅. 一种非接触式气体泄漏检测系统, 授权, 2019/09/06 中国产权局,ZL 201611050159.X

[5] 胡军,何世军,王祯,王甜甜,郑茂盛. 一种绿色可防腐管壁膜的制备方法,授权, 2019/08/09 中国产权局, ZL 201711173636.6

[6] 胡军,何世军,王甜甜,王祯,王超明. 一种保持光解水反应中ms-BiVO4稳定性的方法. 授权, 2019/04/26,中国产权局,ZL 201710323707.X

[7] 胡军,王祯,王甜甜. 一种基于湿法过滤的室内空气净化系统及净化方法,授权, 2019/04/22,中国产权局,ZL 201610041371.3

[8] 胡军,何世军,王祯,王甜甜. 一种用于压力容器保温的蓄热式撬装保护罩及其制作方法. 授权, 2019/04/03,中国产权局,ZL201611200354.6

[9] 郑茂盛,田忠,赵渊,高航,胡军,滕海鹏,李恒欣. 一种利用牵引法生产双金属复合管的方法. 授权, 2019/02/22中国产权局,ZL 107042246 B

[10] 胡军,王甜甜,何世军,王祯,马晓迅. 一种缓蚀剂对石油套管在酸性介质中的应用工艺,授权, 2018/10/10,中国产权局,ZL 201610551543.1

[11] 胡军,王祯,何世军,王甜甜. 一种室内可呼吸窗户,授权, 2018/10/02. 中国产权局, ZL 201710288153.4

[12] 胡军,王祯,王甜甜,何世军,郑茂盛.一种蓄热保温水杯, 授权, 2018/07/20,中国产权局,  ZL 106175346A

[13] 胡军,王祯,王甜甜,何世军. 一种制冷制热保温饭盒,授权, 2018/07/20,中国产权局,  ZL 201610599448.9

[14] 胡军,王甜甜,王祯,何世军. 马晓迅. 一种单壳多层混合式球形储罐及其制造工艺,2018/04/27,中国产权局,ZL 201610595625.6

[15] 胡军,王甜甜,王祯,何世军.一种仿生机器鱼,2017/12/05,中国产权局, ZL 201610985816.3

[16] 胡军,王赟,余历军,郑茂盛. 一种高氯离子介质的合金缓蚀剂及缓蚀方法. 2016/07/13, 中国产权局, ZL 201410238507.0.

[17] 胡军,郑茂盛,余历军,赵源,滕海鹏. 一种膨胀石墨复合蓄热材料及其制备方法和应用. 2013/9/11, 中国产权局, ZL 201310274286.8

[18] 郑茂盛,胡军,余历军,赵源、滕海鹏. 膨胀石墨复合蓄热材料及其制备方法和应用. 2013/9/11, 中国产权局, ZL 201310274316.5

[19] 胡军,郑茂盛,余历军,赵渊. 安全式蒸汽发生器换热器管道结构. 2015/5/14, 中国产权局, ZL 201410022642.1

14. 学生毕业情况:

已毕业硕士生:

Ø 王赟,2016,氯离子介质中不同金属的电化学腐蚀行为及缓蚀作用研究,北京科技大学读博, 硕士期间获得国家奖学金

Ø 王超明,2017,常见腐蚀离子在掺杂CrFe表面上吸附的密度泛函理论研究,中国科学院金属研究所读博 硕士期间获得优秀毕业生

Ø 王甜甜,2018,酸性环境下缓蚀剂对金属腐蚀的缓蚀机理研究 温州宏丰电工合金股份有限公司,硕士期间获得国家奖学金

Ø 王祯,2018,复配缓蚀剂的分子动力学模拟及缓蚀机理研究 南京航天航空大学读博,硕士期间获得国家奖学金

Ø 何世军,2019, 超疏水防腐涂层的开发,711研究所 硕士期间获得国家奖学金,优秀毕业生。

15. 当前在读的硕士生:

Ø 曹晓飞 研二  超疏水防腐耐磨涂层的开发硕士期间获得国家奖学金

Ø 石佳坤 研一 超疏水防腐耐磨涂层的开发。

Ø 宋卫 研一 高性能热电池阳极材料开发。

16. 教学经历

Ø 2019-2020学年/第一期:金属工艺学,2018级必修,学分3.5,选学人数 60

Ø 2018-2019学年/第二期:过程流体机械,2014级必修,学分3.0,选学人数46

Ø 2018-2019学年/第一期:金属工艺学,2018级必修,学分3.5,选学人数

Ø 2016-2017学年/第二期:过程流体机械,2014级必修,学分3.0,选学人数86

Ø 2016-2017学年/第一期:金属工艺学,2015级必修,学分3.5,选学人数86

Ø 2015-2016学年/第二期: 过程流体机械,2013级必修,学分3.0,选学人数86

Ø 2015-2016学年/第二期: 机械设计基础(下)2014级必修,学分3.5,选学人数86.

Ø 2015-2016学年/第一期: 机械设计基础(上),2014级必修,学分3.5,选学人数86.

Ø 2015-2016学年/第一期: 金属工艺学,2014级必修,学分3.5,选学人数86.

Ø 2014-2015学年/第二期: 过程流体机械,2012级必修,学分3.0,选学人数88.

Ø 2014-2015学年/第二期: 机械设计基础(下)2013级必修,学分3.5,选学人数91

Ø 2014-2015学年/第一期: 机械设计基础(上),2013级必修,学分3.5,选学人数91

Ø 2014-2015学年/第一期: 金属工艺学,2013级必修,学分3.5,选学人数91

Ø 2013-2014学年/第二期: 过程流体机械,2011级必修,学分3.0,选学人数85.

Ø 2013-2014学年/第一期: 金属工艺学,2012级必修,学分3.5,选学人数88

Ø 2013-20162018-2020 金工实习 化工学院全体





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