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首页> 外文期刊>Journal of Cleaner Production >Exploring the potential of additive manufacturing for product design in a circular economy
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Exploring the potential of additive manufacturing for product design in a circular economy

机译:探讨循环经济中产品设计的添加剂制造潜力

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Additive manufacturing, also known as 3D printing, is acknowledged for its potential to support sustainable design. In this paper, we explore whether the opportunities that additive manufacturing offers for sustainable design are also useful when designing for a circular economy, and to what extent additive manufacturing can support design for a circular economy. We performed a literature review on the sustainability aspects of additive manufacturing and held a series of interviews with designers about their 3D printed design projects to obtain in-depth information. The interviews were analysed using annotated portfolios, a novel analysis method created specifically for this research. This resulted in a visual representation of the outcomes. We found that additive manufacturing supports circular design strategies by creating opportunities to extend a product's lifespan, for instance by enabling repair or upgrades, even if these products were not originally designed for ease of repair or upgrading. However, the use of monolithic structurally complex parts that support design for recyclability may hinder high value product recovery, like repair. Besides this, the current offer of 3D printable materials should be extended with materials developed for durable use, as well as high-value reuse. Concluding, when accounting for these drawbacks, additive manufacturing is able to support multiple product life cycles and can provide valuable contributions to a circular economy. (C) 2019 Elsevier Ltd. All rights reserved.
机译:添加剂制造,也称为3D打印,被承认其支持可持续设计的潜力。在本文中,我们探讨了可持续设计的适应性制造所提供的机会在设计循环经济时也有用,以及在多大程度上可以在多大程度上支持循环经济的设计。我们对添加剂制造的可持续性方面进行了文献综述,并与设计师举行了一系列关于其3D印刷设计项目的访谈,以获得深入的信息。使用注释的投资组合进行了分析了面试,这是一个专门为本研究创建的新型分析方法。这导致了结果的视觉表现。我们发现添加剂制造支持循环设计策略,通过创造延长产品的寿命,例如通过实现维修或升级,即使这些产品最初不用于易于维修或升级,也是如此。然而,使用单片结构复杂的部件,即支持可回收性的设计可能会阻碍高价值产品回收,如修复。除此之外,应延长3D可打印材料的当前报价,用于耐用使用的材料,以及高价值再利用。结论是,在核对这些缺点时,添加剂制造能够支持多个产品寿命,可以为循环经济提供有价值的贡献。 (c)2019 Elsevier Ltd.保留所有权利。

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