Frontiers in Educational Research, 2025, 8(1); doi: 10.25236/FER.2025.080116.
Zhikun Wang1, Chunhua Liu1, Zhengcheng Tang1, Bin Hu1, Jiaqian Wang2
1Jinjiang College, Jiangsu University, Zhenjiang, Jiangsu Province, China
2School of Environment and Safety Engineering, Jiangsu University, Zhenjiang, Jiangsu Province, China
This article analyses the problems and reasons between the demand for high-end manufacturing and mechanical engineers, explores the development background of high-end manufacturing and its demand for technical talents, and proposes principles for adjusting the training mode of mechanical engineers. Among them, the educational objectives should follow the principle of "people-oriented", and the adjustment of talent training mode should follow the principle of "technology orientation" while meeting the three integration principles. In response to the future demand of high-end manufacturing, this article also puts forward some implementation paths for talent training, such as strengthening school-enterprise cooperation and emphasizing the training of practical ability, and emphasizes the construction of interdisciplinary course. This article aims to provide some ideas and methods for the training of mechanical engineers in China's future high-end manufacturing industry and reforming the talent training.
High-End Manufacturing Industry, Talent Cultivation, Mechanical Engineering Field, Interdisciplinary
Zhikun Wang, Chunhua Liu, Zhengcheng Tang, Bin Hu, Jiaqian Wang. Exploration of Talent Training Models in Mechanical Engineering for Future High-end Manufacturing Demands. Frontiers in Educational Research (2025) Vol. 8, Issue 1: 94-101. https://doi.org/10.25236/FER.2025.080116.
[1] Jiang Q, Cao Z, Wang B. Cultivation of the Innovative Ability Students in Mechanical Engineering with Subject Competition and outcome-based Education [J]. Proceedings of the 7th International Conference on Education, Management, Information and Mechanical Engineering (EMIM), Shenyang, PEOPLES R CHINA, F 2017.
[2] Jin X, Xiao G, Du J, et al. Reform and practice of mechanical foundation series courses in the context of "Engineering-with-a-Big-E" [J]. Journal of Machine Design, 2023, 40(8): 171-6.
[3] Ge M, Zhang H, Guo S, et al. Research on practical teaching mode of mechanical innovation driven by discipline competitionwith Shanghai University as an example [J]. Journal of Machine Design, 2024, 41(7): 168-74.
[4] Dan H, Hu D. Construction and Teaching Reform of Experimental Course of Materials Mechanics [J]. Experiment Science and Technology, 2012.
[5] Ge L, Yao X, Ying M, et al. Teaching Reform and Practice of Intelligent Manufacturing Engineering Professional Foundation Courses in the Context of New Engineering Disciplines: Take the Course "Fundamentals of Mechanical Design" as an Example [J]. Journal of Higher Education Teaching, 2024.
[6] Jihyung K, Kyeong-Sun K, Jonghyeon K, et al. Teaching Methodology for Understanding Virtual Reality and Application Development in Engineering Major [J]. Sustainability,2023.
[7] Honghua L, Honghua L, Wenping T, et al. Teaching System of Embedded Mechanical Manufacturing Specialty Based on Deep Learning [J]. Mobile Information Systems, 2021.
[8] Wang K, Zhang Z, Sun L, et al. Research on the Model of Promoting the Training of Applied Talents in Mechanical Specialty by Cooperation between Government, School, Industry and Enterprise [J]. 5th International Workshop on Education, Development and Social Sciences (IWEDSS), 2019.
[9] Narucha T. Designing the curriculum of the packaging design course based on the active learning [J]. IEEE 28th International Conference on Engineering, Technology and Innovation (ICE/ITMC), 2022.
[10] Elena B, Elena B, Ignasi F, et al. A `study and research path' enriching the learning of mechanical engineering [J]. European Journal of Engineering Education, 2019.
[11] Xiulin S, Junpeng S, et al. Exploration and Thinking on the Teaching Model of Theory and Practice for Mechanical Engineering “Excellence Engineer Training Plan” [J]. National Conference for Engineering Sciences, 2013.
[12] Г С, Gergana S, Р Д, et al. Work Ability of Machinery Manufacturing Employees [J]. Journal of Biomedical and Clinical Research, 2017.
[13] Vilma S, Vilma S, Aida Olivia Pereira De Carvalho G, et al. Towards Active Evidence-Based Learning in Engineering Education: A Systematic Literature Review of PBL, PjBL, and CBL [J]. Sustainability, 2022.
[14] Feng L, Lu C, Gao Y. Synthesized Reform Practice Links of Mechanical Basis Course Group for Applied-Typed College Students; proceedings of the Information Computing and Applications, Berlin, Heidelberg, F 2011//, 2011 [C]. Springer Berlin Heidelberg.
[15] David S-L, David S-L, Sofia P-C, et al. A design of machinery learning activity to develop critical thinking [J]. The International journal of mechanical engineering education, 2021.
[16] Bruno Antonio R, Guillermo R B, Fernando M, et al. Modeling and stability analysis of a sliding bead from a problem-based learning perspective [J]. International Journal of Mechanical Engineering Education, 2023.