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Task-Based Learning in Vocational Education: A Case Study of 3D Parametric Mechanical Design Course with Cloudized Learning Platform

机译:基于任务的职业教育学习 - 以混浊的学习平台为例3D参数机械设计课程

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Machinery begins the industrial age. Machinery field include Design, Manufacture, Analysis, Simulation, and Management. For the first step of Machinery, mechanical design, processing will start from the needs assessment. Hence, Mechanical design is an important course in Mechanical major. Recently, through computer science and imaging, computing, mechanical design software is embedding the parametric connect concept named parametric mechanical design software. Before students learn this course, they need to finish previous course, like geometric computing, mechanism, engineering graphics et al. Based on development of instruction science, this Study is combined task-based learning and implementing into 3D parametric mechanical design course. In the course, student need to finish a design task, e.g. Design mechanism or product with innovative concept. All of the students use the Mechanical design software to design their product. The task-based learning is used in for undergraduate student learn 3D parametric mechanical design course. In this study, the innovation of mechanical design is evaluated with two experts who are teaching in mechanical design and innovative design course over 7 years. And the consistency check Kappa is using to evaluate students' product design project with the framework of success criteria for a design project. The result of this study indicates that implementing task-based learning will help students to design a product.
机译:机械开始工业时代。机械领域包括设计,制造,分析,模拟和管理。对于机械,机械设计的第一步,加工将从需求评估开始。因此,机械设计是机械专业的重要课程。最近,通过计算机科学和成像,计算,机械设计软件正在嵌入参数连接概念名为参数机械设计软件。在学生学习本课程之前,他们需要完成以前的课程,如几何计算,机制,工程图形等。基于教学科学的发展,本研究与基于任务的学习和实施到3D参数机械设计课程。在课程中,学生需要完成设计任务,例如,设计机制或产品与创新概念。所有学生都使用机械设计软件来设计产品。基于任务的学习用于本科生学习3D参数机械设计课程。在这项研究中,使用两位专家评估机械设计的创新,这些专家在7年内是机械设计和创新设计课程的教学。并且一致性检查Kappa正在使用设计项目的成功标准框架来评估学生的产品设计项目。本研究结果表明,实施基于任务的学习将有助于学生设计产品。

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