首页|高分子材料加工实验教学课程体系的设计与探索

高分子材料加工实验教学课程体系的设计与探索

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"双一流"建设背景下,结合北京航空航天大学材料科学与工程专业的实际情况,从改变教学理念、建设教学平台、优化实验内容、改革教学方法等方面对高分子材料加工成型实验教学体系进行了设计和建设.通过小型桌面实验平台的开发和建设;新颖实验内容的引入;不同年级实验课程的有机整合;以及小组轮换、组间讨论、自助式实验等教学方法,初步建成了"高分子 3D打印成型及其耗材制备技术实验"教学体系.实践表明,该体系能够有效调动学生的积极性和主动性,培养学生的动手能力、科研意识和创新精神,有助于卓越拔尖人才的培养.
Design and exploration of experimental teaching system for processing of polymer materials
Under the background of"Double first class"construction,combined with the actual situa-tion School of Material Science and Engineering in Beihang University,the experimental teaching sys-tem of polymer material processing was designed and constructed from the aspects of changing teaching concept,building teaching platform,optimizing experimental content and reforming teaching methods.Through the development and construction of small desktop experimental platform,the introduction of novel experimental content,the organic integration of experimental courses of different grades,and the teaching methods of group rotation,inter group discussion and self-help experiment,the experimental teaching system of"Polymer 3D printing molding and preparation technology of 3D printing consuma-bles"has been preliminarily established.Practice shows that the experimental teaching system can mo-bilize the enthusiasm and initiative of students effectively,cultivate students'practical ability,scien-tific research consciousness and innovative spirit,and contribute to the cultivation of outstanding top-notch talents.

experimental teachingdouble first class constructionpolymer materials processingteaching reformcomprehensive qualities

王凯

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北京航空航天大学 材料科学与工程学院,北京 100191

实验教学 "双一流"建设 高分子材料加工 教学改革 综合素质

2024

实验室科学
南开大学 中国高等教育学会

实验室科学

影响因子:0.805
ISSN:1672-4305
年,卷(期):2024.27(6)