首页> 外文会议>Design Automation Conference;ASME International Design Engineering Technical Conferences;Computers and Information in Engineering Conference >FAVORING COMPLEXITY: A MIXED METHODS EXPLORATION OF FACTORS THAT INFLUENCE CONCEPT SELECTION IN DESIGN FOR ADDITIVE MANUFACTURING
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FAVORING COMPLEXITY: A MIXED METHODS EXPLORATION OF FACTORS THAT INFLUENCE CONCEPT SELECTION IN DESIGN FOR ADDITIVE MANUFACTURING

机译:偏好复杂性:一种混合方法,探讨了影响添加剂制造设计中概念选择的因素

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The capabilities of additive manufacturing (AM) open up designers' solution space and enable them to build designs previously impossible through traditional manufacturing. To leverage AM, designers must not only generate creative ideas, but also propagate these ideas without discarding them in the early design stages. This emphasis on selecting creative ideas is particularly important in design for AM (DfAM), as ideas perceived as infeasible through the traditional design for manufacturing lens could now be feasible with AM. Several studies have discussed the role of DfAM in encouraging creative idea generation; however, there is a need to understand concept selection in DfAM. In this paper, we investigated the effect of two variations in DfAM education:1) restrictive DfAM and 2) dual DfAM (opportunistic and restrictive) on students' concept selection process. Specifically, we compared the creativity of the concepts generated by the students to the creativity of the concepts selected by them. Further, we performed qualitative analyses to explore the rationale provided by the students in making these design decisions. From the results, we see that teams from both educational groups select ideas of greater usefulness; however, only teams from the restrictive DfAM group select ideas of higher uniqueness and overall creativity. Further, we see that introducing students to opportunistic DfAM increases their emphasis on the complexity of designs when evaluating and selecting them. These results highlight the need for DfAM education to encourage AM designers to not just generate but also select creative ideas.
机译:添加剂制造业的功能(AM)开辟了设计人员的解决方案,使它们能够通过传统制造来构建以前不可能的设计。为了利用AM,设计师不仅必须产生创意,而且还在不丢弃早期设计阶段的情况下传播这些想法。这种强调在AM(DFAM)的设计中,选择创意尤为重要,因为通过传统的制造镜头设计感到不可行的思想现在可以与AM可行。若干研究讨论了DFAM在鼓励创意生成中的作用;但是,需要了解DFAM中的概念选择。在本文中,我们调查了DFAM教育的两个变化:1)限制性DFAM和2)双DFAM(机会主义和限制)对学生的概念选择过程的影响。具体来说,我们将学生生成的概念的创造力与他们选择的概念的创造力进行了比较。此外,我们进行了定性分析,以探索学生提供这些设计决策的理由。从结果中,我们看到来自教育群体的团队选择更有用处的想法;但是,只有来自限制性DFAM集团的团队选择更高唯一性和整体创造力的想法。此外,我们看到将学生介绍到机会主义的DFAM增加他们在评估和选择它们时强调设计的复杂性。这些结果突出了对DFAM教育的需求,鼓励设计师不仅产生,而且选择创意。

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