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A Research University and Community College Collaboration Model to Promote Micro-manufacturing Education: Preliminary Findings

机译:研究型大学与社区学院的合作模式,以促进微制造教育:初步结果

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Two-year community colleges and four-year universities provide the bulk of the human resource talent needed by the Nation's manufacturing sector. However, microano-scale technologies are yet to find their way into the mainstream manufacturing curriculum taught at these institutions. In addition to being relevant to the training of the next generation of manufacturing professionals, these technologies are also strategic in painting a positive picture of manufacturing for the youth in the United States. This paper presents preliminary findings from the implementation of a collaborative micro-manufacturing education module between Rensselaer Polytechnic Institute (RPI), a four-year research university, and Hudson Valley Community College (HVCC), a two-year community college, located in upstate New York. The module focuses on introducing two processes, viz., micro-machining and electrospinning, as part of the existing manufacturing curriculum at both institutions. The preliminary findings indicate that the students from both institutions appreciate the exposure provided by the module. A key aspect of this collaboration is the co-located educational-space model where RPI maintains the high-end equipment infrastructure, while HVCC students have access to the space and the resources of the RPI teaching team. This case study illustrates that the geographical proximity of educational institutions, coupled with their complementary student demographic and mission in terms of manufacturing research and education, can result in a symbiotic relationship that promotes the cause of advanced manufacturing in the United States.
机译:两年制社区学院和四年制大学提供了国家制造业所需的大部分人力资源人才。但是,微米/纳米技术尚未进入这些机构教授的主流制造课程中。这些技术不仅与培训下一代制造业专业人员有关,而且在为美国年轻人描绘正面制造业形象方面也具有战略意义。本文介绍了四年制研究型大学伦斯勒理工学院(RPI)与位于北部州的两年制哈德逊河谷社区学院(HVCC)之间实施协作式微制造教育模块的初步发现纽约。该模块的重点是介绍两个过程,即微加工和静电纺丝,作为两个机构现有制造课程的一部分。初步发现表明,两个机构的学生都对模块提供的知识表示赞赏。这项合作的一个关键方面是位于同一地点的教育空间模型,其中RPI维护高端设备基础设施,而HVCC学生可以使用RPI教学团队的空间和资源。该案例研究表明,教育机构的地理位置接近,加上他们在制造业研究和教育方面的互补学生群体和使命,可以导致共生关系,从而促进美国先进制造业的发展。

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