学 位:博士
所在系所:机械装备与控制工程系
行政职务:无
办公地点:机电楼810
办公电话:+86-10-62333343
电子邮箱:kongning@ustb.edu.cn
科研方向:航天器结构机构设计、分析与制造、摩擦学(含摩擦、润滑、磨损、冲蚀)、轧制工艺与装备、计算力学(有限元、分子动力学等)
本科生课程:工程数值计算、冶金生产工艺及装备、轧制过程控制、功能材料
研究生课程:专业外语
社会/学术兼职:
中国机械工程学会高级会员
中国机械工程学会空间机构分会委员
入选江苏省科技副总人才计划
《钢铁》、《中国冶金》等EI期刊青年编委
担任Tribology International、ACS Applied Materials & Interfaces、ACS Applied Nano Materials、Materials Letters、Royal Society Open Science、Journal of Materials and Product Technology、Steel Research International、Industrial & Engineering Chemistry Research等20余个国际知名学术期刊审稿人。
教育经历:
2003.09-2007.07 燕山大学betway88西汉姆联,机械设计制造及其自动化专业,本科,导师:黄文
2007.09-2010.10 betway88西汉姆联,硕博连读研究生,2010年10月国家公派赴澳大利亚攻读博士学位研究生,导师:张杰/曹建国
2010.11-2015.06 澳大利亚卧龙岗大学工学院,机械工程专业,博士研究生,导师:Prof. Anh Kiet Tieu (院士)
工作经历:
2015.07-2017.06 betway88西汉姆联,机械装备与控制工程系,教师博士后,合作导师:张杰
2017.07-2020.06 betway88西汉姆联,机械装备与控制工程系,讲师
2020.07-2026.06 betway88西汉姆联,机械装备与控制工程系,副教授
2026.07-至今 betway88西汉姆联,机械装备与控制工程系,教授
代表性论著:
一、期刊论文:
(1) Heng Li, Ning Kong*, Shuo Yang, Jie Zhang, Haowei Wang, Xiaoyu Wang, Yuan Zhuang. Design and Mechanical Analysis of a Noval Space Orthogonal Feather-like Deployment Structure with High Stability[J]. Thin-Walled Structures, 2026, 221: 114466 (1-11).
(2) Yitong Wang, Ning Kong*, Xueming Zhang, Rui Ma, Yu Lei, Kaifu Mi, Qingqing Ding, Jie Zhang, Dongshan Li. Erosion mechanism and zirconia erosion-resistant protection of shale gas gathering pipelines under dynamic gas-liquid-solid flow conditions[J]. Engineering Failure Analysis, 2026, 186: 110519 (1-21).
(3) Yuwei Song, Ning Kong*, Lingdong Hua, Zhengzhong Wang, Dianxin Sun, Jie Zhang. Nanoindentation mechanical testing and simulation-based predictive modeling of porous oxide layers on high-surface-quality low-alloy pickled steel strips[J]. Journal of Iron and Steel Research International, 2026, 33(8): 226 (1-17).
(4) Boyu Wei, Zhengzhong Wang, Guangyi Song, Ning Kong*, Jinming Li, Jie Zhang, Pei Liang, Yuwei Song, Wenquan Sun. A study on flatness defect control with edge wave during cold rolling process of SUS430 stainless steel by sendzimir mill[J]. Metallurgical Research & Technology, 2026, 123(3): 309 (1-14).
(5) Yucheng Mao, Ning Kong*, Xiaoli Liu, Chong Yuan, Yongliang Dong, Rui Fang, Xulong Guan. Integrated synchronous cold roll forming for high-strength steel octagonal tubes with high-precision forming control[J]. The International Journal of Advanced Manufacturing Technology, 2026: 1-14.
(6) Hehang Zhang, Ning Kong*, Yuwei Song, Zhuangwei Niu, Chuang Peng. Study on the safety of a magnetic strainer at the deaerator outlet under two-phase and large-scale flow fields[J]. Chemical Engineering Research and Design, 2024, 205: 802-821.
(7) Wenquan Sun, Jinming Li, Ning Kong*, Jie Zhang. Flatness defect control during cold rolling of SUS430 stainless steel[J]. Materials Testing, 2024, 66(6): 896-912.
(8) Ningsong Fan, Tao Chen, Jiang Ju, Aran Rafferty, Rocco Lupoi, Ning Kong, Yingchun Xie, Shuo Yin. Solid-state deposition of Mo-doped CoCrFeNi high-entropy alloy with excellent wear resistance via cold spray[J]. Journal of Materials Research and Technology, 2024, 30: 8382-8395.
(9) Kaifu Mi, Qingqing Ding, Xiangru Xu, Yu Lei, Juncheng Wang, Ning Kong*. Study on the Lubrication Performance of Graphene-Based Polyphosphate Lubricants in High-Temperature Steel–Steel Friction Pair[J]. Surfaces, 2024, 7(3): 571-588.
(10) Ke Liu, Qingqing Ding, Hao Peng, Kang Guan, Xiaowan Xi, Ning Kong*, Maolin Liao. Tribological properties of multilayer DLC/MoS2 nanocomposite coatings on microtextured titanium alloy surfaces[J]. Lubricants, 2024, 12(11): 374 (1-16).
(11) Boyu Wei, Ning Kong*, Shilin Hu, Jie Zhang, Hongtao Zhu, Dongshan Li. Effect of five typical vacancy defects on the tribological behaviors of MoS2 sheet: A molecular dynamics study[J]. Applied Surface Science, 2023, 639: 158175 (1-11).
(12) Pei Liang, Ning Kong*, Jie Zhang. The differences in microstructure, micro-texture and tensile anisotropy of Ti80 heavy plate across the thickness[J]. Advanced Engineering Materials, 2023, 25(8): 2201403 (1-14).
(13) Pei Liang, Jie Zhang, Ning Kong*. A modified Johnson–Cook constitutive model for titanium alloy TA31 and its implementation into FE[J]. Materials Testing, 2023, 65(2): 192-201.
(14) Zhuangwei Niu, Jie Zhang, Ning Kong*, Jie Ren, Yuan Zhuang, Bo Wang, Runqi Han. Design and simulation analysis of docking interface of linked in-orbit replacement module[J]. Machines, 2023, 11(4): 491 (1-16).
(15) Pei Liang, Jie Zhang, Ning Kong*, Hongbo Li, Hengfei Zhu. The Microstructure Characteristics Evolution of Bulk High-Purity Silver for High Relief Application[J]. Metals, 2023, 13(3): 463 (1-15).
(16) Boyu Wei, Jie Zhang, Ning Kong*, Shuai Ma, Bo Wang, Runqi Han. Self-docking characteristics and sliding mode control on space electromagnetic docking mechanism[J]. Machines, 2023, 11(3): 332 (1-18).
(17) Pei Liang, Ning Kong*, Jie Zhang, Hongbo Li. A Modified Arrhenius-Type Constitutive Model and its Implementation by Means of the Safe Version of Newton–Raphson Method [J]. Steel Research International, 2022, 94(1): 2200443 (1-11).
(18) Dongshan Li, Ning Kong*, Ruishan Li, Boyang Zhang, Yongshun Zhang, Zhiguo Wu, Qingdong Zhang. The tribological performance of W-DLC in solid–liquid lubrication system addivated with Cu nanoparticles[J]. Surface Topography: Metrology and Properties, 2021, 9(4): 045043 (1-13).
(19) Boyu Wei, Ning Kong*, Jie Zhang, Hongbo Li, Zhenjun Hong, Hongtao Zhu, Yuan Zhuang, Bo Wang. A molecular dynamics study on the tribological behavior of molybdenum disulfide with grain boundary defects during scratching processes [J]. Friction, 2021, 9 (5): 1198-1212.
(20) Dongshan Li, Ning Kong*, Boyang Zhang, Qingdong Zhang. Comparative study on the effects of oil viscosity on typical coatings for automotive engine components under simulated lubrication conditions [J]. Diamond and Related Materials, 2021, 112: 108226 (1-10).
(21) Jie Ren, Ning Kong*, Yuan Zhuang, Jie Zhang, Shuai Ma, Bo Wang, Wei Liu. A review on the interfaces of orbital replacement unit: Great efforts for modular spacecraft [J]. Proceedings of the Institution of Mechanical Engineers Part G Journal of Aerospace Engineering, 2021, 235(14): 1941-1967.
(22) Ning Kong*, Chuan Zhao, Jianguo Cao, Qingdong Zhang. A study on potential strip shape control of high - strength steel during hot pinch rolling process [J]. Steel Research International, 2020, 92(1): 2000140 (1-8).
(23) Ning Kong*, Jiaming Zhang, Jie Zhang, Hongbo Li, Boyu Wei, Dongshan Li, Hongtao Zhu. Chemical- and mechanical-induced lubrication mechanisms during hot rolling of titanium alloys using a mixed graphene-incorporating lubricant [J]. Nanomaterials, 2020, 10(4): 665 (1-21).
(24) Ning Kong*, Boyu Wei, Yuan Zhuang, Jie Zhang, Hongbo Li, Bo Wang. Effect of compressive prestrain on the anti-pressure and anti-wear performance of monolayer MoS2: A molecular dynamics study [J]. Nanomaterials, 2020, 10(2): 275 (1-14).
(25) Ning Kong*, Boyu Wei, Dongshan Li, Yuan Zhuang, Guopeng Sun, Bo Wang. A study on the tribological property of MoS2/Ti-MoS2/Si multilayer nanocomposite coating deposited by magnetron sputtering [J]. RSC Advances, 2020, 10(16): 9633-9642.
(26) Ning Kong*, Jinyu Li, Congfa Zhang, Jie Zhang, Hongbo Li, Haowei Wang, Biao Li, Yuan Wang. A study on mechanical characteristics and self-preservation performance of the deployment mechanism with large exhibition ratio during its gathering process [J]. Materials, 2020, 13(7): 1650 (1-19).
(27) Ning Kong*, Jie Zhang, Hongbo Li, Boyu Wei, R. G. David Mitchell. The influence of a novel inorganic-polymer lubricant on the microstructure of interstitial-free steel during ferrite rolling [J]. Metals, 2020, 10(2): 178 (1-13).
(28) Bin Yan, Ning Kong*, Jie Zhang, Hongbo Li. High temperature formability of Ti–4Al–2V titanium alloy under hot press forming process [J]. Materials Research Express, 2019, 6(12): 126501 (1-12).
(29) Zhaoning Zhang, Ning Kong*, Hongbo Li, Jie Zhang. The migration and reaction of ions during the oxidation of Fe-Si alloy with 0.5 wt% Si at 1000–1200 °C [J]. Materials Research Express, 2018, 5(6): 066506 (1-9).
(30) Yanlin Li, Jianguo Cao, Ning Kong, Dun Wen, Henghao Ma, Yunsong Zhou. The effects of lubrication on profile and flatness control during ASR hot strip rolling. International Journal of Advanced Manufacturing Technology, 2017, 91(5-8): 2725-2732.
(31) Li Yanlin, Cao Jianguo, Kong Ning, Wen Dun, Ma Henghao, Zhou Yunsong. The integration effects on flatness control in hot rolling of electrical steel. Steel Research International, 2017, 88(4): 1600208 (1-7).
(32) Anh Kiet Tieu, Shanhong Wan, Ning Kong, Qiang Zhu, Hongtao Zhu. Excellent melt lubrication of alkali metal polyphosphate glass for high temperature applications. RSC Advances, 2015 (5): 1796-1800.
(33) Anh Kiet Tieu, Ning Kong*, Shanhong Wan, Hongtao Zhu, Qiang Zhu, David Mitchell, Charlie Kong. The influence of alkali metal polyphosphate on the tribological properties of heavily loaded steel on steel contacts at elevated temperatures [J]. Advanced Materials Interfaces, 2015, 2: 1500032 (1-14).
(34) Ning Kong*, Anh Kiet Tieu, Qiang Zhu, Hongtao Zhu, Shanhong Wan, Charlie Kong. Tribofilms generated from bulk polyphosphate glasses at elevated temperatures [J]. Wear, 2015, 330: 230-238.
(35) Ning Kong, Jianguo Cao, Yanping Wang, Anh Kiet Tieu, Lianhong Yang, Anquan Hou, Zebin Wang. Development of smart contact backup rolls in ultra-wide stainless strip rolling process [J]. Materials and Manufacturing Processes, 2014, 29: 129-133.
(36) Ning Kong, Anh Kiet Tieu, Hongtao Zhu, Qiang Zhu. Application of solid lubricant during warm rolling process of interstitial free steel. Materials Research Innovations, 2013, 17: 79-84.
(37) 胡典章, 高轶桐, 韩文, 张智杰, 宋玉玮, 李旭, 丁庆庆, 孔宁*. 矫直辊服役后材料性能对矫直辊断裂行为影响[J]. 中国冶金, 2025, 35(4): 50-57.
(38) 耿智伟, 张杰, 孔宁*, 马帅, 王波, 韩润奇. 空间可重复机械锁紧及电磁解锁机构设计与分析[J]. 北京航空航天大学学报, 2024, 50(12): 3947-3956.
(39) 张杰, 朱恒飞, 汪旭超, 孔宁*, 李钢, 杨玉. 高浮雕银章热压材料本构模型及成形特性研究[J]. 天津大学学报(自然科学与工程技术版), 2023, 56(10): 1021-1030.
(40) 杨硕, 张杰, 孔宁*, 王浩威, 王晓宇, 庄原. 航天用大展收比豆荚结构变形规律模型及其仿真验证[J]. 中国机械工程, 2023, 34(7): 780-788.
(41) 殷唯, 张杰, 位博宇, 李东山, 孔宁*. TC4钛合金表面微织构干摩擦特性[J]. 哈尔滨工业大学学报, 2023, 55(4): 130-137.
(42) 张杰, 孔宁*, 王一博, 宋玉玮. 汽车大梁钢粉状氧化铁皮剥落定量评价分析[J]. 钢铁, 2023, 58 (01): 125-132.
(43) 李东山, 孔宁*, 张清东, 曹学乾, 鲁志斌, 万晓娜, 林博. 二维纳米石墨烯作为传动油添加剂的齿轮承载性能研究[J]. 表面技术, 2023, 52(3): 151-160.
(44) 耿智伟, 王名亮, 王波, 何华东, 马动涛, 位博宇, 赵家岱, 牛壮葳, 孔宁. 地外天体固体样品封装技术综述[J]. 航天器工程, 2023, 32(1): 105-115.
(45) 孔宁*, 杨迪, 张杰, 李洪波, 王一博. 含磷高强钢板拉矫破鳞过程的氧化皮剥离机理[J]. 钢铁, 2021, 56 (01): 59-68.
(46) 庄原, 孔宁*, 任杰, 李洪波. 在轨可更换模块对接接口技术综述[J]. 中国机械工程, 2020, 31 (16): 1917-1930.
(47) 张赵宁, 张杰, 孔宁*, 李洪波. 基于拉矫过程参数组合优化的带钢酸洗效率[J]. 机械工程学报, 2019, 55 (02): 51-63.
(48) 张赵宁, 孔宁*, 张杰, 李洪波. 基于曲率积分法的拉矫工艺参数优化[J]. 塑性工程学报, 2018, 25 (05): 175-184.
(49) 张赵宁, 孔宁*, 张杰, 李洪波. Fe-Si合金钢氧化铁皮的结构对酸洗行为的影响[J]. 中国冶金, 2018, 28 (09): 28-32.
(50) 李秾, 孔宁*, 李洪波, 张杰, 贾生晖, 褚玉刚, 刘海军. SI-FLAT板形仪检测原理的流固耦合振动分析.工程科学学报, 2017, 39(4), 593-603.
(51) 孔政, 孔宁*, 张杰, 李洪波. 双相钢的力学性能和对成形极限的影响. 机械工程学报, 2017, 53(12), 140-146.
会议论文:
(1) Ning Kong*, Shanshan Liu, Hongbo Li, Jie Zhang. The graphene as friction reduction and antiwear additive in polyphosphate lubricant for elevated rubbing surfaces. In: World Tribology Congress, September 17-22, 2017, Beijing, China.
(2) Ning Kong*, Kiet Tieu, Hongtao Zhu, Qiang Zhu. Tribological Behavior during Rolling of Ultra-low Carbon Steel at Warm Temperature Range with Solid Lubricant. In: Advances in Materials & Processing Technology Conference (AMPT), November 16-20, 2014, Dubai, United Arab Emirates.
著作及出版:
(1) 曹建国, 孔宁, 朱冬梅, 杨光辉. 薄板坯连铸连轧工艺与设备. 化学工业出版社, 2017.
(2) Cao Jianguo, Zhang Jie, Kong Ning, Mi Kaifu. Finite Element Analysis of Strip and Rolling Mills, Finite Element Analysis, David Moratal (Ed.), ISBN: 978-953-307-123-7, SCIYO. (Book chapter), 2010.
代表性发明专利:
(1) 孔宁, 胡君彬, 王一童, 王波, 廖云浩, 高扬, 李衡, 祁茜, 马蕊. 一种基于电磁驱动的空间对接接口[P]. 中国, 2026-05-05, ZL202511444519.3.
(2) 孔宁, 赵家岱, 王嘉俊, 许佳玮, 王世磊, 李洪波, 耿智伟, 牛壮葳. 一种验证多锥杆导向容差的方法[P]. 中国, 2026-02-27, ZL202211639954.8.
(3) 孔宁, 毛昱程. 一种可快速更换模具的C型钢端部斜角剪切设备[P]. 中国, 2025-10-31, ZL202510285071.9.
(4) 刘晓立, 王光炫, 黄素霞, 孔宁, 李河宗, 毛昱程, 杨胜奇, 冯举正. 一种抱箍加强筋焊接处开裂的控制方法[P]. 中国, 2025-09-19, ZL202411759615.2.
(5) 孔宁, 韩润奇, 何永强, 李林, 杨强, 王明, 王波, 李潇, 从强, 庄原, 王文龙, 耿智伟, 李冰岩. 大容差可展开式双点异形定位导向机构及容差设计方法[P]. 中国, 2025-06-24, ZL202210022549.5.
(6) 李洪波, 陈克勤, 孔宁, 刘璋. 具有局部边浪控制能力的变凸度工作辊辊形及设计方法[P]. 中国, 2023-08-25, ZL202310007141.5.
(7) 李洪波, 梁培, 张杰, 孔宁. 一种近α型钛合金热塑性大变形过程中的织构预测方法[P]. 中国, 2023-06-23, ZL202111357923.9.
(8) 李洪波, 王世磊, 黄泳程, 孔宁, 张杰. 一种离线综合板形检测仪及检测方法[P]. 中国, 2023-04-28, ZL202211681582.5.
(9) 张杰, 王浩威, 杨硕, 王晓宇, 邱慧, 张龙, 王祥, 孔宁. 一种正交式可展结构压缩应变与作用力的预测方法和装置[P]. 中国, 2023-04-14, ZL202210515595.9.
(10) 张杰, 韩润奇, 何永强, 杨强, 王明, 李林, 王波, 张书洋, 李潇, 从强, 庄原, 王文龙, 孔宁, 谭星勇. 一种用于空间机械臂操作的解锁限位机构[P]. 中国, 2023-04-07, ZL202210046801.6.
(11) 孔宁, 王浩威, 杨硕, 李潇, 张龙, 牛壮葳, 许怡贤, 邱慧, 苏周, 王晓宇. 变形过程类电磁波正交保持的层叠式弹性空间伸展臂[P]. 中国, 2022-10-28, ZL202110565856.3.
(12) 孔宁, 李伟杰, 牛壮葳, 庄原, 马帅, 任杰. 基于型面导向三爪锁紧动作时序的小型空间对接机构[P]. 中国, 2022-08-05, ZL202110581871.7.
(13) 孔宁, 王波, 马帅, 韩润奇, 庄原, 牛壮葳, 耿智伟. 一种基于电磁式球锁结构的空间对接机构[P]. 中国, 2022-07-12, ZL202110564510.1.
(14) 曹建国, 王雷雷, 宋纯宁, 李艳琳, 赵秋芳, 孔宁, 曹媛, 吕昌帅. 适用于短行程窜辊非对称自补偿轧制工作辊及其实现方法[P]. 中国, 2022-04-15, ZL202011243653.4.
(15) 孔宁, 张从发, 马帅, 李金玉, 黎彪, 于春宇, 张杰, 樊俊峰. 一种空间大伸缩比自展开机构的动作辅助装置[P]. 中国, 2022-03-04, ZL202010328314.X.
(16) 孔宁, 庄原, 王耀兵, 马帅, 任杰, 李林, 张杰, 王波, 王文龙, 刘卫. 一种动作时序解耦的小型空间对接机构[P]. 中国, 2021-12-03, ZL202010257770.X.
(17) 孔宁, 庄原, 任杰, 韩润奇, 马帅, 刘育强, 张杰, 刘希刚, 张立元, 王耀兵. 一种空间在轨可更换模块机电热一体化接口装置[P]. 中国, 2021-03-16, ZL202010268522.5.
(18) 孔宁, 马帅, 张杰, 李洪波, 任杰. 基于嵌入式输料管结构的高强度铝合金臂架及其铰接方式[P]. 中国, 2020-11-27, ZL201910979501.1.
(19) 孔宁, 陈晨, 李洪波, 张清东, 张杰. 一种防止热轧免酸洗汽车大梁钢氧化铁皮粉状剥落方法[P]. 中国, 2019-11-08, ZL201810003351.6.
(20) 孔宁, 王一博, 刘珊珊, 曹建国. 一种基于氧化石墨烯轧制用水基纳米润滑剂及其制备方法[P]. 中国, 2019-10-25, ZL201610991159.3.
(21) 孔宁, 樊柠松, 李洪波, 张杰, 张清东. 一种用于钛及钛合金板带轧制的润滑剂[P]. 中国, 2019-10-22, ZL201810200370.8.
(22) 孔宁, 刘姗姗, 张杰, 李洪波. 一种基于石墨烯强化的液‑固混合润滑剂及其制备方法[P]. 中国, 2019-10-18, ZL201610980813.0.
(23) 曹建国, 柴雪婷, 赵荣国, 刘晓立, 刘江, 何安瑞, 贺增磊, 孔宁, 缪存孝. 一种复杂截面冷弯型钢的辊弯成型方法[P]. 中国, 2019-10-11, ZL201710260099.2.
(24) 孔宁, 黄景辉, 朱伊哲, 张赵宁, 李洪波, 张杰. 一种钢材热轧用环保型无机抗氧化类润滑剂[P]. 中国, 2019-08-13, ZL201610826771.5.
(25) 孔宁, 朱伊哲, 黄景辉, 李洪波, 曹建国, 夏春雨. 一种高温环保型水基离子液体润滑剂[P]. 中国, 2019-07-09, ZL201610821946.3.
软件著作权:
(1) 辊弯成形冲孔计算软件V1.0, 2026SR0845325, 2026-08-18.
(2) 山西建龙1500mm热轧线成品氧化层厚度预测软件V1.0, 2025SR2126607, 2025-10-31.
(3) 大展收比结构设计与分析软件V1.0, 2022SR0278563, 2021-12-20.
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成果与荣誉:
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