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A FACTORY-CENTRIC WORKFORCE DEVELOPMENT APPROACH FOR AEROSPACE INDUSTRY

机译:一种用于航空航天工业的工厂员工开发方法

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Given the rapid transformation of the aerospace sector in the last decade, teaching practices should prepare engineers to face fast-paced industries that are dealing with exceedingly complex problems. Now more than ever we need engineers who are capable of working and communicating effectively within large and multi-disciplinary groups, considering the introduction of new material systems such as advanced composites in primary structural elements, development of automated processing methods such as Automated Fiber Placement (AFP), and the transition to interconnectivity among production systems, workers, products and customers. Exceedingly we need to train well-rounded and practical-minded engineers and scientists. At the University of Washington, we are dedicated to support the aerospace industry by training the next generation of engineers. A new 16,000 sq. ft. facility, Advanced Composites Center (ACC), will be dedicated for manufacturing of aerospace composite parts. Taking advantage of automation and AFP processing, sensor technologies, autoclaves and other manufacturing equipment, we aim to replicate a small factory within the university environment at the ACC. Partnering with industry, this facility will enable students to gain practical experience working on industry relevant problems within a factory setting. In addition, while working on industrial projects, students will gain experience on business, intellectual property (IP) and project management aspects.
机译:鉴于过去十年航空航天部门的快速转型,教学实践应该准备工程师面对处理非常复杂的问题的快节奏产业。现在,我们需要能够在大型和多学科群体中有效工作和沟通的工程师,考虑到主要结构元件中的先进复合材料等新材料系统,自动化纤维放置等自动化处理方法的开发( AFP),以及生产系统,工人,产品和客户之间的互连之间的过渡。我们需要培养圆满和实用的工程师和科学家。在华盛顿大学,我们致力于通过培训下一代工程师来支持航空航天行业。一个新的16,000平方英尺FT。设施,高级复合材料中心(ACC)将专用于航空航天复合部件的制造。利用自动化和AFP加工,传感器技术,高压夫妇和其他制造设备,我们的目标是在ACC的大学环境中复制一家小工厂。与行业合作,此设施将使学生能够在工厂环境中获得行业相关问题的实践经验。此外,在研究工业项目的同时,学生将获得商业,知识产权(IP)和项目管理方面的经验。

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