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The development of a mechatronics and material handling course: Laboratory experiments and projects.

机译:机电和材料处理课程的开发:实验室实验和项目。

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Mechatronic systems integrate technologies from a variety of engineering disciplines to create solutions to challenging industrial problems. The material handling industry utilizes mechatronics to move, track, and manipulate items in factories and distribution centers. Material handling systems, because of their use of programmable logic controllers (PLC), PLC networks, industrial robotics, and other mechatronic elements, are a natural choice for a college instructional environment. This thesis offers insight and guidance for mechatronic activities introduced in a laboratory setting. A series of eight laboratory experiments have been created to introduce PLCs, robotics, electric circuits, and data acquisition fundamentals. In-depth case studies synthesize the technologies and interpersonal skills together to create a flexible material handling system.;Student response to the course and laboratory material was exceptional. A pre and post course questionnaire was administered which covered topics such as teamwork, human factors, business methods, and various engineering related questions. Quantitative scores resulting from these questionnaires showed a marked improvement by students, especially in regards to technical/engineering questions. The responses from students generally indicated an excitement about course material and a thorough understanding of the various syllabus topics. In this thesis, the multi-disciplinary mechatronics (and material handling systems) laboratory will be presented. An in-depth examination of each laboratory will be offered as well as the discussion of two material handling case studies. The Appendixes contain the PLC and robot code for a order fulfillment case study.
机译:机电一体化系统集成了来自各种工程学科的技术,以创建解决挑战性工业问题的解决方案。物料搬运行业利用机电一体化技术来移动,跟踪和操纵工厂和配送中心中的物品。物料搬运系统由于使用了可编程逻辑控制器(PLC),PLC网络,工业机器人和其他机电一体化元件,因此是大学教学环境的自然选择。本文为在实验室环境中引入的机电一体化活动提供了见识和指导。已经创建了一系列八个实验室实验,以介绍PLC,机器人技术,电路和数据采集基础知识。深入的案例研究将技术和人际交往能力综合在一起,以创建一个灵活的材料处理系统。学生对课程和实验室材料的反应异常出色。课前和课后调查问卷的管理范围包括团队合作,人为因素,业务方法以及与工程相关的各种问题。这些调查表得出的定量分数显示出学生的明显进步,特别是在技术/工程问题方面。学生的回答通常表明对课程材料感到兴奋,并对各种课程大纲主题有透彻的理解。本文将介绍多学科的机电一体化(和材料处理系统)实验室。将提供每个实验室的深入检查,以及两个材料处理案例研究的讨论。附录包含用于订单履行案例研究的PLC和机器人代码。

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