代表性论文专著
图书著作:
1. Zhinan Zhang, Nian Yin. Tribo-Informatics: The Systematic Fusion of AI and Tribology. CRC Press, 2024
2. Zhinan Zhang, Yufei Ma, Ke He, Ruiqi Hu, Mingxuan Hu. Digital twin enhanced tribo-test service. Chapter 10 in Digital Twin Driven Service. 2022 Elsevier Inc
3. Zhinan Zhang, Xiang Li, Xin Wang, Hui Cheng. Decentralized cyber-physical systems: A paradigm for cloud-based smart factory of industry 4.0. Chapter 6 in Cybersecurity for Industry 4.0 – Analysis for Design and Manufacturing, Thames, L. and Schaefer, D. (Ed), Springer, 2017.
4. Zhinan Zhang, Xiang Li, Yonghong Liu Youbai Xie. Distributed Resource Environment: A Cloud-based Knowledge Service Paradigm. Chapter 3 in Cloud-Based Design and Manufacturing: A Service-Oriented Product Development Paradigm for the 21st Century, Schaefer, D. (Ed), Springer, 2014.
5. 于随然,张执南等译.工程设计(第5版). 北京:机械工业出版社,2017.
6. 中国机械工程学会.中国机械工程技术路线图. 北京:中国科学技术出版社,2016. 撰写13.1优质设计
7. 中国机械工程学会. 机械工程学科发展报告(摩擦学).北京:中国科学技术出版社, 2016. 陆地交通摩擦学
期刊论文:
在摩擦学、智能设计与制造、知识管理、创新设计教育等多学科方向已发表100余篇期刊论文,其中SCI期刊论文100余篇,包括Nature Communications, Research,Nano Energy,npj-Flexible Electronics, Biosensors & Bioelectronics, Friction,RCIM,AI EDAM, ASME/IEEE等期刊。在WTC,ASEE,ASME,ICED以及全国摩擦学大会等国内外学术会议做报告多次。
Special Issues
Zhang, Z., Pan, S., Raeymaekers, B. (2024). "Special Issue on Artificial Intelligence and Emerging Computational Approaches for Tribology" Friction.
Zhu, Y., Zhang, Z., and Sadeghi, F. (July 19, 2023). "Special Issue on Tribo-Informatics: Toward High-Efficiency Tribology Research." ASME. J. Tribol. September 2023; 145(9): 090301.
综述文章
1. AI for Tribology: Present and Future. Friction, https://doi.org/10.1007/s40544-024-0879-2
2. Metal matrix nanocomposites in tribology: manufacturing, performance, and mechanisms. Friction, https://doi.org/10.1007/s40544-021-0572-7
2. Tribo-informatics approach in tribology research: A review, Friction, https://doi.org/10.1007/s40544-022-0596-7
4. Fundamental Theories and Basic Principles of Triboelectric Effect: A Review. Friction, https://doi.org/10.1007/s40544-018-0217-7
5. Research methods of contact electrification: Theoretical simulation and experiment, Nano Energy, https://doi.org/10.1016/j.nanoen.2020.105501
代表性英文期刊论文
ASME/IEEE汇刊
1. Ke He, Yufei Ma, Zhinan Zhang*. Tribo-Informatics Approach to Investigate the Friction and Wear of Bushings in the Variable Stator Vane System. Trans. of the ASME, Journal of Tribology,2023, 145 (12)
2. Shi Chen, Ke He, Xiaojiang Cai, Zhinan Zhang*. An efficient modeling method for the simulation of ball bearing dynamics. Trans. of the ASME, Journal of Computational and Nonlinear Dynamics, 2022, https://doi.org/10.1115/1.4055314
3. Zhinan Zhang*,Zhen Li, Shuaihang Pan, Xianghai Chai. Enhanced strength and high-temperature wear resistance of Ti6Al4V alloy fabricated by laser solid forming. Trans. of the ASME, Journal of Manufacturing Science and Engineering, 2022,141: 111011 https://doi.org/10.1115/1.4054901
4. Jingren Xie, Shuai Mao, Zhinan Zhang*, Chengliang Liu. Data-Driven Approaches for Characterization of Aerodynamics on Super High-Speed Elevators, Trans. of the ASME, Journal of Journal of Computing and Information Science in Engineering,https://doi.org/10.1115/1.4054869
5. Renaldy Dwi Nugraha, Ke He, Ang Liu, Zhinan Zhang*. Short-term cross-sectional time-series wear prediction by deep learning approaches. Trans. of the ASME, Journal of Journal of Computing and Information Science in Engineering,2022, 23 (2): 021007
6. Ke He, Shi Chen, Zhinan Zhang*. A sparse matrix-based method for rapid solving the Reynolds equation. Trans. of the ASME, Journal of Tribology, 2022, 144(5): 051803., 0.1115/1.4051862
7. Zhinan Zhang, Ling Liu, Wei Wei, et al. A systematic function recommendation process for data-driven product and service design. Trans. of the ASME, Journal of Mechanical Design, 2017, 139(11): 111404.
8. Zhinan Zhang*, Gang Liu, Zhichao Jiang, Yong Chen. A Cloud-Based Framework for Lean Maintenance, Repair, and Overhaul of Complex Equipment. Trans. of the ASME, Journal of Manufacturing Science and Engineering 2015, 137(4): 040908-040908-11.
9. Zhinan Zhang*,Xun Zhuge,Xiang Li,Richard Evans,Ang Liu. An object-oriented approach to the modular design of complex mechatronic systems. IEEE Transactions on Engineering Management, 2022,https://doi.org/10.1109/TEM.2022.3191438.
10. Zhinan Zhang*, Jun Liu, Richard D. Evans, Ang Liu. A Design Communication Framework based on Structured Knowledge Representation, IEEE Transactions on Engineering Management, 2021, 68 (6):1650-1662.
11. Jiabin Zhu*, Rongrong Liu, Qunqun Liu, Tianyi Zheng, Zhinan Zhang*. Engineering Students' Epistemological Thinking in the Context of Project-Based Learning. IEEE Transactions on Education, 2019, 62(3): 188-198.
摩擦学 Tribology
1. Pan Shuaihang*, Jin Kaiyu, Wang Tianlu, Zhang Zhinan*, Zheng Long, Umehara Noritsugu. Metal matrix nanocomposites in tribology: manufacturing, performance, and mechanisms. Friction (2022). https://doi.org/10.1007/s40544-021-0572-7
2. Nian Yin, Zhiguo Xing, Ke He, Zhinan Zhang*. Tribo-informatics approach in tribology research: A review, Friction (2022). https://doi.org/10.1007/s40544-022-0596-7
3. Wu Zishuai#, Yu Tongtong#, Wu, Wei, Liu, Jianxi, Zhang, Zhinan, Wang, Daoai*, Liu, Weimin. Nanotribology of SiP nanosheets: Effect of Thickness and Sliding Velocity. Friction (2022). https://doi.org/10.1007/s40544-021-0570-9
4. Zhinan Zhang*, Nian Yin, Shi Chen, Chengliang Liu. Tribo-informatics: Concept, architecture, and case study. Friction, 2021, 9(3): 642–655.
5. Zhinan Zhang*, Shuaihang Pan, Nian Yin, Bin Shen, Jie Song. Multiscale analysis of friction behavior at fretting interfaces. Friction, 2021, 9(1):119–131.
6. Mingxue Shen, Bo Li, Zhinan Zhang*, Longzhi Zhao, Guangyao Xiong*. Abrasive wear behavior of PTFE for seal applications under abrasive-atmosphere sliding condition. Friction 2020,8: 755–767.
7. Shuaihang Pan, Zhinan Zhang*. Fundamental Theories and Basic Principles of Triboelectric Effect: A Review. Friction, 2019, 7(1):2-17.
8. Zhinan Zhang*, Jun Liu, Tonghai Wu, Youbxie Xie. Effect of carbon nanotubes on friction and wear of a piston ring and cylinder liner system under dry and lubricated conditions. Friction, 2017, 5(2): 147-154.
9. Zhinan Zhang*, Jun Liu, Youbai Xie. Design approach for optimization of piston ring profile considering mixed lubrication. Friction, 2016,4 (4):335-346.
10. Mingxue Shen, Bo Li, Dehui Ji, Guangyao Xiong*, Longzhi Zhao, Jian Zhang, Zhinan Zhang*. Effect of Particle Size on Tribological Properties of Rubber/Steel Seal Pairs Under Contaminated Water Lubrication Conditions. Tribology Letters,2020, 68:40.
11. Nian Yin, Zhinan Zhang*, Junyan Zhang. Study on friction at graphene step edges influenced by tip shape by molecular dynamics simulations. Tribology Letters, 2019, 67(3):75.
12. Mingxue Shen, Li Bo, Shengxin Li, Guangyao Xiong*, Dehui Ji, and Zhinan Zhang*. Effect of particle concentration on the tribological properties of NBR sealing pairs under contaminated water lubrication conditions. Wear,2020, 456: 203381.
13. Shi Chen, Nian Yin, Qin Yu, Zhinan Zhang*. A novel tribometer for investigating bushing wear. Wear, 2019, 430-431: 263-271.
14. Bo Zhao*, Xinqing Hu; Haifeng Li, Xianci Si, Qingbing Dong, Zhinan Zhang, Baocheng Zhang*. A new approach for modeling and analysis of the lubricated piston skirt-cylinder system with multi-physics coupling. Tribology International, 2022, 167: 107381.
15. Bo Zhao, Xiaotong Yu, Yonghui Liu, Lihua Yang, Zhinan Zhang, Baocheng Zhang, Frictional characteristics of heterostructure film composed of graphene and H-BN with the consideration of defects. Tribology International, 2021, 153:1-13.
16. Bo Zhao, Xudong Dai, Zhinan Zhang, Youbai Xie. A new numerical method for piston dynamics and lubrication analysis. Tribology International, 2016, 94: 395-408.
17. Bo Zhao, Zhinan Zhang, Congcong Fang, Xudong Dai, Youbai Xie. Modeling and analysis of planar multibody system with mixed lubricated revolute joint. Tribology International, 2016, 98: 229-241.
18. Chen Shi, Nian Yin, Xiaojiang Cai, Zhinan Zhang*. Iteration framework for solving mixed lubrication computation problems. Frontiers of Mechanical Engineering, 2021, 16(3): 635-648.
19. Shi Chen, Zhinan Zhang*. Modification of friction for straightforward implementation of friction law. Multibody System Dynamics, 2020, 48 (2), 239-257.
20. Shuaihang Pan, Zhinan Zhang*. Triboelectric effect: A new perspective on electron transfer process, Journal of Applied Physics, 2017, 122(14):14302.
交叉学科 Interdisciplinary
1. Pufan Yang, Gaofeng Wei*, Ang Liu, Fengwei Huo, Zhinan Zhang*. A Review of sampling, energy supply and intelligent monitoring for long-term sweat sensors, npj-Flexible Electronics, 2022, 6 (1), 1-13
2. Yilin Cai#, Shiyi Huang#, Zhinan Zhang*, Chen Xiaoxiang, Jiazheng Zhang, Xingyue Zhu, Xianting Ding*. Bio-mimic rotation microneedles for accurate transdermal positioning and ultra-minimal-invasive biomarker detection with attenuated skin deformation. spj-Research, 2022,2022: 9869734
3. Aynur Abdulla, Zhianan Zhang*, Khan Zara Ahmad, Antony R. Warden, Hengyu Li*, Xianting Ding*. Rapid and Efficient Capturing of Circulating Tumor Cells from Breast Cancer Patient’s Whole Blood via the Antibody Functionalized Microfluidic (AFM) Chip. Biosensors and Bioelectronics, 2022, 201: 113965.
4. Zhinan Zhang*, Nian Yin, Zishuai Wu, Shuaihang Pan, Daoai Wang. Research methods of contact electrification: Theoretical simulation and experiment, Nano Energy,2021,79:105501.
5. Shiwei Xu, Yange Feng, Ying Liu*, Zishuai Wu, Zhinan Zhang*, Min Feng, Sainan Zhang, Guoyun Sun, Daoai Wang*. Gas-Solid Two-Phase Flow-driven Triboelectric Nanogenerator for Wind-sand Energy Harvesting and Self-powered Monitoring Sensor. Nano Energy, 2021,85:106023.
6. Bo Zhao*, Zihao Li, Xinqin Liao, Longfei Qiao, Yiran Li, Shulin Dong, Zhinan Zhang, Baocheng Zhang. A heaving point absorber-based ocean wave energy convertor hybridizing a multilayered soft-brush cylindrical triboelectric generator and an electromagnetic generator. Nano Energy, 2021, 89: 106381.
7. Jin Kaiyuan*, Shuaihang Pan*, Tianlu Wang, Zhinan Zhang. Non-negligible corrosion process in a novel sulfur-based energy storage system. Journal of Power Sources,2021, 490: 229529.
8. Shuaihang Pan, Nian Yin, Zhinan Zhang*. Time- & load-dependence of triboelectric effect. Scientific Reports, 2018, 8:2470
9. Zhinan Zhang*, Xin Wang, Xiaoxiao Zhu, Qixin Cao, Fei Tao. Cloud Manufacturing Paradigm with Ubiquitous Robotic System for Product Customization. Robotics and Computer Integrated Manufacturing, 2019, 60:12-22.
10. Jun Liu, Zhinan Zhang*, Richard Evans, Youbai Xie. Web Services-based knowledge sharing, reuse and integration in the design evaluation of mechanical systems. Robotics and Computer Integrated Manufacturing, 2019, 57:271-281.
11. Renaldy Dwi Nugraha, Shi Chen, Nian Yin, Tonghai Wu, Zhinan Zhang*. Running-in real-time wear generation under vary working condition based on Gaussian process regression approximation, Measurement, 2021, 109599.
12. Zhinan Zhang*, Xin Wang, Fan Cui, Xiaohan Wang, Hui Cheng. A simulation-based approach for plant layout design and production planning. Journal of Ambient Intelligence and Humanized Computing, 2019, 10(3):1217-1230.
13. Wang, Xin, Nian Yin, Zhinan Zhang*. Smart design of intelligent companion toys for preschool children. AI EDAM 2021, 35(2): 151-164.
中文期刊论文:
1. 潘帅航,尹念,张执南.微动界面连续干摩擦行为的分子动力学模拟[J].机械工程学报,2018,54(03):82-87.
2. 尹念,张执南,张俊彦.导电滑环Au涂层摩擦磨损行为的分子动力学模拟[J].摩擦学学报,2018,38(01):108-114.
3. 柴象海,史同承,王少辉,张执南.航空发动机风扇叶片与机匣刮蹭分析及结构设计[J].航空动力学报,2019,34(09):1879-1887.
4. 柴象海,张执南,阎军,刘传欣.航空发动机风扇叶片冲击加强轻量化设计[J].002cc全讯开户送白菜学报,2020,54(02):186-192.
5. 曾勇,张执南.面向环境的设计——一个创新设计的理论与方法[J].002cc全讯开户送白菜学报,2019,53(07):881-883.
6. 陈诗元,张雨捷,林海阳,郭峰,张执南.基于环境设计理论的灼伤瘢痕冷冻治疗仪创新设计[J].002cc全讯开户送白菜学报,2019,53(07):884-890.
7. 赵洋,华一雄,张执南,柴象海.基于Hertz接触理论的叶片-机匣碰摩模型[J].002cc全讯开户送白菜学报,2019,53(06):660-664.
8. 尹念,张执南.石墨烯台阶处摩擦特性的分子动力学模拟[J].002cc全讯开户送白菜学报,2018,52(05):620-623.
9. 陈实,张执南,蔡晓江,魏新生.磨削参数对工件表面形貌及其摩擦性能的影响[J].002cc全讯开户送白菜学报,2018,52(05):575-581.
10. 刘郡,张执南,谢友柏.低黏度润滑油与织构对活塞环-缸套摩擦特性的影响[J].002cc全讯开户送白菜学报,2018,52(05):505-510.
11. 张执南.基于模型的复杂机电系统创新设计[J].科技导报,2019,37(07):68-74.
12. 张执南,荣维民,谢友柏.丹麦中小微企业的创新创业成功案例启示[J].科技导报,2017,35(22):46-51.
13. 陶飞,刘蔚然,刘检华,刘晓军,刘强,屈挺,胡天亮,张执南,向峰,徐文君,王军强,张映锋,刘振宇,李浩,程江峰,戚庆林,张萌,张贺,隋芳媛,何立荣,易旺民,程辉.数字孪生及其应用探索[J].计算机集成制造系统,2018,24(01):1-18.
14. 诸葛洵,王笑含,王强,郑培,吴若诚,程辉,张执南.航天器大型化构件数字化工厂仿真建模方法[J].机械设计与研究,2018,34(04):137-141+151.
会议论文:
1. 张执南. 摩擦信息学的架构及案例. 2020年全国青年摩擦学学术会议(在线会议), 2020年6月22-23,大会特邀报告
2. 张执南.航空发动机VSV作动环衬套摩擦磨损测试系统的创新设计. 第十二届全国表面工程大会暨第十届全国青年表面工程论坛, 2018年11月9~12日, 昆明,邀请报告
3. 张执南. 摩擦磨损试验机的系统化设计方法. 2018全国青年摩擦学学术会议,2018年4月27-29日,福州,邀请报告
4. 张执南. 航天器关键连接件微动损伤机理与防护研究. 2016全国青年摩擦学学术会议,2016年5月20-22日,西安,邀请报告
5. Zhinan Zhang, Houzhi Liu, et al. Redesign of capstone design for improving engineering students with multidimensional capabilities. 2020 ASEE Annual Conference and Exposition(ASEE’s Virtual Conference), June 22, 2020, Montreal, Canada, Oral presentation
6. Cai M(Cai Mingzhi)., Seligsohn E.N., Zhang Z., and Wang Y. “Risk perception and product safety in user centered design.” Proceedings of 2019 ASME International Design Engineering Technical Conferences & Computers and Information in Engineering Conference (IDETC/CIE2019), 9 August 18-21, 2019, Anaheim, California, Paper No. DETC2019-98371.
7. Shuaihang Pan, Zhinan Zhang, Nian Yin. Scientific Scaling-Up from Molecular Dynamics Simulation to Friction Behavior Prediction. The World Tribology Congress, September 18-22, 2017, Beijing, Oral presentation
8. Zhinan Zhang, Nian Yin, Fagang Zhao. Effect of random vibration on wear of fretting interface. The 6th World Tribology Congress, September. 17-22, 2017, Beijing, China.
9. Jason Li-Ying, Zhinan Zhang, Qing Long. The hidden moderator: Exploring the roles of tuo’er in intra firm R&D online communities. The 14th International Open and User Innovation Conference, August 1-3, 2016, Harvard Business School, USA
10. Milojevic H, Girardello A, Z Zhang, Y Jin, Influence of thinking style on design creativity. The 4th International Conference on Design Creativity (4th ICDC), November 2-4, 2016, Atlanta, Georgia, USA.
11. Zhinan Zhang*, Weimin Ding, Meng Zhao, Yong Chen. Conceptual Design of a Dark Fiber Identifier Based on the NFPS Model. the Fourteenth International Federation for the Promotion of Mechanism and Machine Science World Congress (2015 IFToMM), October 25-30, 2015, Taipei, Taiwan.
12. Zhinan Zhang, Xuemeng Li, Zelin Liu. A closed-loop based framework for design requirement management. International Conference on Concurrent Engineering, September 8-10, 2014, Beijing, China.
13. Zhinan Zhang, Yonghong Liu, Qing Long, Youbai Xie. An inner-enterprise design knowledge flow management approach. The ASME 2014 12th Biennial Conference on Engineering Systems Design and Analysis, June 25-27, 2014, Copenhagen, Denmark.
14. Zhinan Zhang, Tonghai Wu, Bin Wu. Knowledge integration for design of tribo-systems. The 5th World Tribology Congress, September 8-13, 2013, Torino, Italy.
15. Zhinan Zhang, Wei Ma, Gang Liu, Yong Chen. Modeling the knowledge flow network for collaborative design process. Proceedings of the 13th International Conference on Engineering Design (ICED13), August 19-22, 2013, Seoul, Korea.
教学工作
******现主讲课程****
课程名称:工程学导论(荣誉),课程代码:ME1221H,授课对象:本科生,学时数:48,学分:3.0
课程名称:科学研究与创新实践,课程代码:ME502 ,授课对象:本科生(卓工计划),学分:2.0
课程名称:复杂系统的设计与实践,课程代码:ME6564 ,授课对象:研究生,学分:4.0
******曾主讲课程******
课程名称:复杂机电系统的设计与实践,课程代码:ME26006 ,授课对象:研究生,学分:4.0
课程名称:毕业设计,课程代码:BS076,授课对象:本科生,学时数:64,学分:4.0
课程名称:工程设计,课程代码:BE411,授课对象:本科生,学时数:64,学分:4.0
课程名称:工程学导论 ,课程代码:ME116,授课对象:本科生,学时数:48,学分:3.0
课程名称:创新思维与现代设计,课程代码:ME903,授课对象:本科生,学时数:34 ,学分:2.0
课程名称:科学研究与创新实践,课程代码: ME493,授课对象: 钱学森班
课程名称:认知实习,课程代码: XP202,授课对象: 卓越工程师计划
课程名称:学术写作、规范与伦理,授课对象:博士生,学时数:16,学分:1.0
课程名称:数据驱动的创新方法与实践(DMX),授课对象:本科生,学时数:32,学分:2.0
******创新实践******
1. 大学生创新实践计划项目/PRP项目/本科生暑期科研见习岗
2. 本科生科研导师
3. 科创竞赛
欢迎本科生加入!
******获奖及项目完成情况******
竞赛获奖情况:挑战杯、中国国际大学生创新大赛、机械创新设计大赛等国赛最高奖
项目完成情况:PRP、大创等项目结题优秀、002cc全讯开户送白菜十佳大创项目等
本科毕设情况:5人次获评002cc全讯开户送白菜优异学士学位论文(Top1%)
课程竞赛情况:
2024白菜网址官网大全研究生实践课程竞赛项目: 一等奖(7项); 二等奖(1项); 三等奖(6项);最佳技术奖(1项),最具商业价值奖(1项)
2024白菜网址官网大全校企合作毕业设计项目展: 一等奖(1项);二等奖(4项)、三等奖(2项); 最佳展示奖(2项)
******课程建设及教学改革******
2024年 上海市一流课程:工程学导论
2021年 上海市重点课程:工程学导论
2023年 002cc全讯开户送白菜致远荣誉课程:工程学导论(荣誉)
2019年 002cc全讯开户送白菜“双一流”研究生优质课程建设:复杂机电/动力系统的设计与实践
2019年 上海市高校本科重点教学改革项目:学教研融合驱动的拔尖创新人才培养模式-以钱学森班试点
2023年 中国工程院咨询课题:大机械类工程教育治理体系研究,研究助理
2017年 教育部人文社会科学研究专项任务(工程人才培养):面向工程技术人才培养的创新创业教育模式研究,第2负责人(谢友柏院士主持)
2020年 002cc全讯开户送白菜2020年教育教学研究项目: 基于沟通模型的在线教学设计
2018年 002cc全讯开户送白菜教学发展中心B类项目: 基于逆向教学设计理论的项目式教学方法研究
******教研成果*******
1. 张执南, 张国洋, 韩东, 陶飞. 基于知识图谱的项目式教学管理方法——以大学生创新实践项目为例[J]. 高等工程教育研究, 2022(02):58-62.
2. 张执南,诸葛洵,王丽伟.多层次闭环反馈项目式教学模式探索——以2024白菜网址官网大全卓越计划2.0为例[J].高等工程教育研究,2020(04):107-111.
3. 张执南,张国洋,朱佳斌.基于Kolb体验式学习循环的创新设计能力培养[J].高等工程教育研究,2020(01):74-78+136.
4. 张执南,陈珏蓓,朱佳斌,张国洋,谢友柏.逆向教学设计法在项目式教学中的应用——以002cc全讯开户送白菜“工程学导论”为例[J].高等工程教育研究,2018(06):145-149.
5. 黄亚鑫,朱佳斌,张执南,余天佐.科创竞赛对工科大学生创业意图的影响研究[J].高等工程教育研究,2021(06):68-74.
6. 王丽伟,吴静怡,张执南,奚立峰,林忠钦.构建面向未来的工程教育体系[J].高等工程教育研究,2021(01):56-66.
7. 朱佳斌,刘群群,刘少雪,张执南.工程教育改革背景下工科学生认知发展现状与影响因素研究[J].高等工程教育研究,2019(06):58-64.
8. 朱佳斌,张国洋,刘群群,张执南.代尔夫特理工大学项目式教学的实践与启示[J].高等工程教育研究,2019(03):81-86.
9. Jiabin Zhu, Yu Hu, Yike Li, Zhinan Zhang, Wanqi Li. Perceptions towards prior learning experiences: lessons learned from early and mid-career professional engineers in a Chinese context, European Journal of Engineering Education, 2022, 47(1): 193-209.
10. Jiabin Zhu*, Rongrong Liu, Qunqun Liu, Zhinan Zhang*. Engineering Students’ Epistemological Thinking in the Context of Project-based Learning. IEEE Transactions on Education, 2019, 62(3):188-198.
11. 仝月荣,肖雄子彦,张执南,尹念.产教深度融合背景下项目式教学模式探析[J].实验室研究与探索,2021,40(07):185-189.
12. 仝月荣,陈江平,张执南,熊夏青,李翠超.产教深度融合、协同探索面向新工科的创新人才培养模式——以002cc全讯开户送白菜学生创新中心为例[J].实验室研究与探索,2020,39(11):194-198.
******教学学术交流*******
1. 张执南. 基于项目制教学的应用型创新人才培养. 面向未来的产教融合应用型人才培养论坛,北京, 2024年1月13日,主旨报告
2. 张执南. 追求理解与协同的导学关系探索. 国际卓越工程师教育论坛,上海,2023年11月25日,主题报告
3. 张执南. 大中贯通培养拔尖创新人才的实践探索. 长三角创新教育论坛:中学拔尖创新人才培育的生态建设路径和实践探索,苏州中学,2023年11月10日,主旨报告
4. 张执南. 基于项目式教学培养创新能力的探索. 中国-东盟教育交流周开幕式2023具备全球胜任力的交叉学科创新人才培养论坛,2023年8月30日,贵阳,主旨报告
5. 张执南. 项目式教学的探索与实践.首届南科大新工科教育论坛-探索工科教育新范式,2023年3月10日-12日,主题报告
6. 张执南. 基于工程师能力图谱的卓越工程师培养探索. 第五届中国机械工程教育大会暨中国机械行业卓越工程师教育联盟2022年理事大会“产教融合平台(现代产业学院)建设”分会场,2022年12月2日,主旨报告
7. 张执南. 交叉学科创新人才培养的探索与实践. 2022年中国-东盟教育交流周“交叉学科创新人才培养论坛”,2022年8月22日,贵阳,主旨报告
8. 张执南. 追求理解与协同的教学设计-以工程学导论为例.002cc全讯开户送白菜教学发展中心,2021年11月2日
9. 张执南. 毕业设计与毕业论文:认知、方法与实践. 中国知网大学生毕业论文写作系列讲座,2021年10月18-22日,线上
10. 张执南. 交叉学科思维培养创新能力的思考与实践. 2021年第七届上海大学生创新创业训练计划成果展,2021年10月23日
11. 张执南. 与学习者协同的创新实践教育教学探索. 中国高校第三届教学学术年会, 2021年7月2-3日,上海,线上会议,主题报告
12. 张执南, 熊振华. 面向新工科的产教深度融合育人模式——以专硕生培养为例. 2019国际机械工程教育大会, 2019年10月25-27日,上海
13. 奚立峰, 张执南. 机械类核心课程的实践教学改革. 2019国际机械工程教育大会, 2019年10月25-27日,上海
14. Zhinan Zhang, Houzhi Liu, et al. Redesign of capstone design for improving engineering students with multidimensional capabilities. 2020 ASEE Annual Conference and Exposition (ASEE’s Virtual Conference), June 22, 2020, Montreal, Canada, Oral presentation
15. Zhinan Zhang. Redesign of Freshman Introduction to Engineering Course for Improved Motivation and High-Level Abilities. SDPS (Society of Design and Process Science) 2020 workshop on “Trans-disciplinary and Cross-cultural Learning (SPDS 25th Anniversary Conference - First Online Conference) November 18-20, 2020, Montreal, Canada, Invited Speaker
16. Zhinan Zhang, Yanqiong Wu, Liwei Wang. Capstone design course at Shanghai Jiao Tong University, Design Science Research: 2018 Workshop on Data-Driven Design and Learning, August 23-25, 2018, Montreal, Canada, Oral presentation
17. Jianbin Zhu, Yaxin Huang, Bing Chen, Zhinan Zhang. The Impact of Participation in Multiple International Learning Experiences for Engineering Students. 2019 ASEE Annual Conference & Exposition,Oral Presentation
18. Milojevic H, Girardello A, Z Zhang, Y Jin, Influence of thinking style on design creativity. The 4th International Conference on Design Creativity (4th ICDC), November 2-4, 2016, Atlanta, Georgia, USA, Oral Presentation