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Assembly Based Methods to Support Product Innovation in Design for Additive Manufacturing: An Exploratory Case Study

机译:基于装配的方法支持增材制造设计中的产品创新:探索性案例研究

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摘要

Additive manufacturing (AM) is emerging as an important manufacturing process and a key technology for enabling innovative product development. Design for additive manufacturing (DFAM) is nowadays a major challenge to exploit properly the potential of AM in product innovation and product manufacturing. However, in recent years, several DFAM methods have been developed with various design purposes. In this paper, we first present a state-of-the-art overview of the existing DFAM methods, then we introduce a classification of DFAM methods based on intermediate representations (IRs) and product's systemic level, and we make a comparison focused on the prospects for product innovation. Furthermore, we present an assembly based DFAM method using AM knowledge during the idea generation process in order to develop innovative architectures. A case study demonstrates the relevance of such approach. The main contribution of this paper is an early DFAM method consisting of four stages as follows: choice and development of (1) concepts, (2) working principles, (3) working structures, and (4) synthesis and conversion of the data in design features. This method will help designers to improve their design features, by taking into account the constraints of AM in the early stages.
机译:增材制造(AM)逐渐成为一种重要的制造工艺和一项关键技术,可以实现创新的产品开发。当今,增材制造设计(DFAM)是如何在产品创新和产品制造中正确利用AM潜力的一项重大挑战。但是,近年来,出于各种设计目的,已经开发了几种DFAM方法。在本文中,我们首先介绍了现有DFAM方法的最新概况,然后介绍了基于中间表示(IR)和产品系统水平的DFAM方法分类,并针对以下方面进行了比较:产品创新的前景。此外,我们提出了一种在思想产生过程中使用AM知识的基于组件的DFAM方法,以开发创新的体系结构。案例研究证明了这种方法的相关性。本文的主要贡献是一种早期的DFAM方法,该方法包括以下四个阶段:(1)概念的选择和开发,(2)工作原理,(3)工作结构以及(4)数据的综合和转换。设计特点。通过在早期阶段考虑AM的限制,该方法将帮助设计人员改善其设计功能。

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