设计学生项目中的物理原型原理:基于有目的原型概念的分析

IF 1.8 Q3 ENGINEERING, MANUFACTURING Design Science Pub Date : 2021-04-08 DOI:10.1017/dsj.2021.6
Konstantinos Petrakis, A. Wodehouse, A. Hird
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引用次数: 11

摘要

摘要原型设计是设计教育的一个主要主题,也是工程设计学术课程的一个组成部分。特别是物理原型和模型构建过程,已经被证明可以提高学生的创造力和足智多谋,并有助于更好地评估概念。然而,学生对原型的使用仍未得到深入探索,目的是将其转化为教育指南。本文基于作者先前工作中提出的有目的原型设计的概念,对原型设计活动背后的学生推理进行了调查。这是通过识别学生设计项目中原型使用的实例,发现它们应用的原型目的类型和程度,以及研究目的、早期设计阶段、学术表现和项目规划之间的关系来实现的。对结果的分析表明,原型设计可以作为项目调度工具来支持学生的学习目标,并突出了早期原型设计对学习成绩的贡献。还证实,学生有限的原型设计范围使他们无法获得原型设计的最大好处,他们需要根据自己的需求制定战略指导方针。基于研究结果,提出了一个新的、改进的原型设计目的列表。
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Physical prototyping rationale in design student projects: an analysis based on the concept of purposeful prototyping
Abstract Prototyping constitutes a major theme of design education and an integral part of engineering design academic courses. Physical prototypes and the model building process, in particular, have been proved to boost students’ creativity and resourcefulness and assist in the better evaluation of concepts. However, students’ usage of prototypes has still not been explored in depth with the aim of being transformed into educational guidelines. This paper presents an investigation of students’ reasoning behind prototyping activities based on the concept of Purposeful Prototyping, developed in the authors’ previous work. This is performed by identifying instances of prototype use in students’ design projects and by discovering which types of prototyping purposes they apply and to what extent, as well as by studying the relationships between purposes, early design stages, academic performance and project planning. The analysis of the results shows that prototyping can support students’ learning objectives by acting as a project scheduling tool and highlights the contribution of early-stage prototyping in academic performance. It is also confirmed that students’ limited prototyping scope prevents them from gaining prototyping’s maximum benefits and that they require strategic guidelines tailored to their needs. A new, improved list of prototyping purposes is proposed based on the study’s results.
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来源期刊
Design Science
Design Science ENGINEERING, MANUFACTURING-
CiteScore
4.80
自引率
12.50%
发文量
19
审稿时长
22 weeks
期刊最新文献
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