面向卓越工程人才培养的材料类实践教学体系构建

Construction of a practical teaching system for materials disciplines aimed at outstanding engineering talent cultivation

  • 摘要: 在加快高水平科技自立自强的战略背景下,发展新质生产力对卓越工程人才培养提出了新的要求,更加强调学生实践能力、工程素养、驾驭智能技术能力的培养,因此需要系统重构实践教学体系,并通过校企合作、学科竞赛、微专业建设等,深化实践教学与技术前沿、产业需求、智能发展之间的联系。该文以天津大学材料类专业为例,分析了材料类专业现有实践教学体系存在的问题,提出了在结合产业发展趋势的基础上,利用专业知识图谱,做好实践教学顶层设计的实施路径。构建了基于多学科知识交叉、非技术能力培养、数智赋能手段融合的实践教学体系。探索了校企合作、赛教融合、微专业建设三位一体的实践教学拓展体系。实践结果表明,学生的实践创新能力和工程素养得到了有效提升,该教学改革的探索与实践为同类专业面向卓越工程人才培养的实践教学体系改革提供了可借鉴的路径与方案。

     

    Abstract: Under the strategic background of accelerating high-level self-reliance and self-strengthening in science and technology, development of new quality productivity imposes new demands on cultivating outstanding engineering talents, with greater emphasis on practical ability, engineering literacy, and proficiency in intelligent technologies. This necessitates a systematic restructuring of the practical teaching system, and deepening its connection with technological frontiers, industrial needs, and intelligent development through university-industry collaboration, academic competitions, and micro-specialty programs. Taking the materials disciplines at Tianjin University as an example, this paper analyzes the existing problems in the current practical teaching system. It proposes an implementation path that combines industrial development trends with a domain-specific knowledge graph to achieve top-level design of practical teaching. A new practical teaching system is constructed, integrating multidisciplinary knowledge, cultivation of non-technical abilities, and digital-intelligent empowerment. Furthermore, an extended system is developed, which combines university-industry collaboration, competition-education integration, and micro-specialty programs into a trinity. The results show that students’ practical innovation ability and engineering literacy have been effectively improved. The exploration and practice of this teaching reform provides a referable path and solution for the practical teaching system reform in similar disciplines aimed at cultivating outstanding engineering talents.

     

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