首页> 外文会议>ASME International Design Engineering Technical Conferences >STUDYING THE IMPACT OF INCORPORATING AN ADDITIVE MANUFACTURING BASED DESIGN EXERCISE IN A LARGE, FIRST YEAR TECHNICAL DRAWING AND CAD COURSE
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STUDYING THE IMPACT OF INCORPORATING AN ADDITIVE MANUFACTURING BASED DESIGN EXERCISE IN A LARGE, FIRST YEAR TECHNICAL DRAWING AND CAD COURSE

机译:研究在大,第一年技术绘图和CAD课程中掺入添加剂制造的设计锻炼的影响

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Additive Manufacturing (AM) is a revolutionary technology in the manufacturing sector, although it has yet to become a cornerstone of formal engineering education. This paper discusses the procedure, result, and impact of incorporating physical prototyping, design iteration, and Design for Additive Manufacturing (DfAM) in afirst-year, first-semester technical drawing and CAD course. In the course, students design balloon powered model car assemblies and are expected to learn core concepts of engineering design, such as modeling, assemblies, and tolerancing. The course consists of 473 students that each design up to two unique model cars. These model cars are fabricated using AM from these CAD designs and returned to students for assembly. Surveys are given to students to empirically validate the usefulness of incorporating AM in the course, with regards to motivating students and improving their ability to accurately translate imagined designs from CAD to physical products. The results show improvement in student intrinsic motivation concerning CAD processes. Student design abilities are also assessed: when student designs do not function as intended, it corresponds with a greater mismatch in how they imagine their CAD design in comparison to its final physical assembly. The mismatch on average decreases for students who design a second model car, which suggests an improvement in design skills. As a whole, our findings demonstrate the feasibility and benefits of including AM in a first-year course, particularly with respect to improving student motivation and their development of key CAD-related skills. Such motivation and skill development is particularly important early in an engineer's career as it can impact their potential to learn and design over the course of their budding career.
机译:添加剂制造(AM)是制造业的革命性技术,但尚未成为正规工程教育的基石。本文讨论了在第一年,第一学期技术绘图和CAD课程中纳入物理原型设计,设计迭代和设计迭代(DFAM)的手术,结果和影响。在课程中,学生设计气球动力模型汽车组件,预计将学习工程设计的核心概念,例如建模,组件和公差。该课程由473名学生组成,每个学生每次都设计两辆独特的型号汽车。这些模型汽车使用来自这些CAD设计的AM使用,并返回给学生进行装配。对学生提供了对学生进行了验证验证了在课程中纳入课程的有用性,以便激励学生,提高他们将想象的设计从CAD准确转换为物理产品。结果表明,关于CAD过程的学生内在动机的提高。还评估了学生设计能力:当学生设计不按预期运行时,它对应于与其最终物理组装相比,他们如何想象他们的CAD设计。为设计第二款车型汽车的学生而言,平均不匹配,这表明设计技能的提高。总的来说,我们的调查结果表明,在一年的课程中包含了包括AM的可行性和益处,特别是关于提高学生动机及其关键CAD相关技能的发展。这种动机和技能发展在工程师的职业生涯中尤为重要,因为它可能会影响他们在崭露头角的职业生涯中学习和设计的潜力。

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