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Enhancement of Mechanical Engineering Curriculum to Introduce Manufacturing Techniques and Principles for Bio-inspired Product Development

机译:改进机械工程课程,引入生物启发产品开发的制造技术和原则

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Bio-inspired products and devices take their inspiration from nature [Gold00]. Current mechanical engineering curricula do not cover manufacturing techniques and principles needed to develop such products and devices. We have been enhancing the mechanical engineering undergraduate curriculum by integrating recent advances in the manufacturing of bio-inspired products and devices through the following activities: 1. Insert a new sequence of instructional materials on bio-inspired concepts into the mechanical engineering curriculum. 2. Disseminate the materials developed for the new modules and course notes through a dedicated web site. As a result of the curriculum enhancement, a new generation of mechanical engineers will acquire the knowledge necessary to develop products and conduct research for a wide variety of applications utilizing bio-inspired concepts. The project (1) integrates emerging manufacturing technologies based on biological principles into the Mechanical Engineering curriculum, (2) utilizes multi-media technology for disseminating course content, and (3) trains graduate students and faculty participating in its implementation in an emerging technology and thereby contribute to faculty development. Specifically, curriculum is being developed that discusses the following manufacturing technologies and principles: 1. Concurrent Fabrication and Assembly: Manufacturing techniques and principles, such as solid freeform fabrication, compliant mechanisms, and multi-stage molding, that can eliminate the manufacturing and assembly of individual components as is the case for almost all natural systems. 2. Self Assembly: Principles for manufacturing a variety of products from a few building blocks using bio- inspired techniques such as templating and supramolecular chemistry. 3. Functionally Graded Materials: Bio-inspired development of new products through the gradual variation of material properties at multiple length scales through manufacturing processes such as sputtering and powder processing. The curriculum development effort makes two significant contributions to mechanical engineering education: (a) integration of a new research on bio-inspired products and devices into the mechanical engineering curriculum through new courses and revision of existing courses, (b) development of new instructional material for mechanical engineering education based on bio-inspired concepts. There are also broader impacts in the following areas: (a) undergraduate students who might not otherwise pursue studies in mechanical engineering will be attracted to the multidisciplinary area of bio-inspired products, (b) dissemination of the curriculum enhancement through conference presentations, a workshop, and dedicated web site, and (c) a biologically-oriented pedagogical approach to mechanical engineering education that ensures broader access to the knowledge needed to enhance the interest and skills of future engineers and researchers educated through this research program.
机译:生物启发的产品和设备从自然中获取他们的灵感[Gold00]。目前的机械工程课程不包括开发此类产品和设备所需的制造技术和原则。我们一直在通过以下活动整合最近的生物启发产品和设备的近期进步来加强机械工程本科课程:1。将新的教学材料序列插入机械工程课程中的生物启发概念。 2.通过专用网站传播为新模块和课程说明开发的材料。由于课程增强,新一代机械工程师将获得开发产品所需的知识和对利用生物启发概念的各种应用进行研究。该项目(1)基于生物学原则将新兴制造技术集成在机械工程课程中,(2)利用多媒体技术来传播课程内容,(3)列车研究生和教师参与其在新兴技术中的实施和教师因此有助于教师发展。具体而言,正在开发课程,讨论以下制造技术和原则:1。并发制造和组装:制造技术和原理,例如固体自由形状制造,柔顺机构和多级模制,可以消除制造和组装几乎所有自然系统的情况都是单独的组件。 2.自组装:使用生物启发技术,如模板和超分子化学制造来自少数建筑物的各种产品的原理。 3.功能分级材料:通过诸如溅射和粉末加工等制造工艺,通过多长度的材料特性逐渐变化的新产品的生物启发开发。课程开发工作对机械工程教育进行了两项重大贡献:(a)通过新的课程和修订现有课程的新课程和修订新教学材料的新课程和修订对机械工程课程基于生物启发概念的机械工程教育。以下领域还有更广泛的影响:(a)本科院学生如果不能在机械工程中追求研究的本科生将被生物启发产品的多学科领域吸引(b)通过会议演示,a的课程增强研讨会,专用网站,(c)一种生物学上导向的机械工程教育方法,可确保更广泛地获得通过本研究计划教育未来工程师和研究人员的利益和技能所需的知识。

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