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INTEGRATING REAL INDUSTRIAL EXPERIENCES INTO THE CURRICULUM THROUGH ROBOTICS APPLICATIONS

机译:通过机器人应用将真实的工业经验整合到课程中

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Integrating real industrial applications and bringing actual engineering problems into the curriculum is always a win-win activity. The educational benefits of such activity are countless. In addition to industry, professional engineering organizations can be a great resource to support actual engineering projects and mentor engineering students. Partnering with industry, professional engineering organization, and any similar entity, allows the students a unique opportunity to gain exposure and practice real engineering before graduation. The challenge with this concept is to find and run the appropriate project or activity that will simultaneously meet the expectations of all parties and fulfill the educational objectives, while conforming to the time limitations of the course. This paper presents and evaluates such experience through two examples of projects utilizing robotics to achieve engineering educational goals through the design and build of functional industry-grade systems. The first project was performed by an interdisciplinary engineering team of students to solve an actual industrial problem. The project was sponsored by an industrial customer and produced a functional prototype that achieved the required goals and was ready to be duplicated at the customer's site. The second project was also performed by a team of engineering students to design and build an industrial scale functional robotic manipulator in partnership with a professional engineering organization. The external organization sponsored the project and provided some professional engineers as mentors. The outcome of the project was a mobile 5-axis robotic manipulator that is used for many engineering demo and recruiting events. These projects are examples of ways in which real engineering exercises can be integrated into the curriculum to enhance the educational process and improve collaboration between academia and other engineering entities.
机译:集成实际的工业应用程序并将实际的工程问题纳入课程表始终是双赢的活动。这种活动的教育收益是无数的。除行业外,专业的工程组织可以成为支持实际工程项目和指导工程专业学生的重要资源。与行业,专业工程组织以及任何类似实体的合作,使学生有一个难得的机会,可以在毕业前获得曝光并进行实际的工程实践。这个概念的挑战是找到并运行适当的项目或活动,该项目或活动将同时满足各方的期望并实现教育目标,同时遵守课程的时间限制。本文通过两个利用机器人技术通过设计和构建功能性工业级系统来实现工程教育目标的项目的示例,来介绍和评估这种经验。第一个项目是由一个跨学科的工程团队的学生完成的,旨在解决实际的工业问题。该项目是由一个工业客户赞助的,并生产了一个功能原型,该原型可以实现所需的目标,并可以在客户的现场进行复制。第二个项目也是由一组工程专业的学生执行的,目的是与专业的工程组织合作设计和制造工业规模的功能性机械手。外部组织赞助了该项目,并提供了一些专业工程师作为指导。该项目的结果是一个可移动的5轴机械手,该机械手用于许多工程演示和招募活动。这些项目是将真实的工程实践整合到课程中以增强教育过程并改善学术界与其他工程实体之间协作的方式的示例。

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