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Hafiz Salman
IDMEC, Instituto Superior Técnico, Universidade de Lisboa, 1049-001 Lisboa, Portugal

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Journal article
Published: 27 January 2020 in Sustainability
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Additive manufacturing (AM) is a group of technologies that create objects by adding material layer upon layer, in precise geometric shapes. They are amongst the most disruptive technologies nowadays, potentially changing value chains from the design process to the end-of-life, providing significant advantages over traditional manufacturing processes in terms of flexibility in design and production and waste minimization. Nevertheless, sustainability assessment should also be included in the research agenda as these technologies affect the People, the Planet and the Profit: the three-bottom line (3BL) assessment framework. Moreover, AM sustainability depends on each product and context that strengthens the need for its assessment through the 3BL framework. This paper explores the literature on AM sustainability, and the results are mapped in a framework aiming to support comprehensive assessments of the AM impacts in the 3BL dimensions by companies and researchers. To sustain the coherence of boundaries, three life cycle methods are proposed, each one for a specific dimension of the 3BL analysis, and two illustrative case studies are shown to exemplify the model.

ACS Style

Inês Ribeiro; Florinda Matos; Celeste Jacinto; Hafiz Salman; Gonçalo Cardeal; Helena Carvalho; Radu Godina; Paulo Peças. Framework for Life Cycle Sustainability Assessment of Additive Manufacturing. Sustainability 2020, 12, 929 .

AMA Style

Inês Ribeiro, Florinda Matos, Celeste Jacinto, Hafiz Salman, Gonçalo Cardeal, Helena Carvalho, Radu Godina, Paulo Peças. Framework for Life Cycle Sustainability Assessment of Additive Manufacturing. Sustainability. 2020; 12 (3):929.

Chicago/Turabian Style

Inês Ribeiro; Florinda Matos; Celeste Jacinto; Hafiz Salman; Gonçalo Cardeal; Helena Carvalho; Radu Godina; Paulo Peças. 2020. "Framework for Life Cycle Sustainability Assessment of Additive Manufacturing." Sustainability 12, no. 3: 929.

Review
Published: 17 November 2018 in Journal of Composites Science
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There is significant work published in recent years about natural fibres polymeric composites. Most of the studies are about the characterization of natural fibres and their comparison with conventional composites regarding mechanical behaviour and application performance. There are dozens of types of natural fibres with different properties influencing their use, or not, in specific industrial applications. The natural origin of these materials causes, in general, a wide range of variations in properties depending mainly on the harvesting location and conditions, making it difficult to select the appropriate fibre for a specific application. In this paper, a comprehensive review about the properties of natural fibres used as composite materials reinforcement is presented, aiming to map where each type of fibre is positioned in several properties. Recent published work on emergent types of fibres is also reviewed. A bibliometric study regarding applications of natural fibres composites is presented. A prospective analysis about the future trends of natural fibres applications and the required developments to broaden their applications is also presented and discussed.

ACS Style

Paulo Peças; Hugo Carvalho; Hafiz Salman; Marco Leite. Natural Fibre Composites and Their Applications: A Review. Journal of Composites Science 2018, 2, 66 .

AMA Style

Paulo Peças, Hugo Carvalho, Hafiz Salman, Marco Leite. Natural Fibre Composites and Their Applications: A Review. Journal of Composites Science. 2018; 2 (4):66.

Chicago/Turabian Style

Paulo Peças; Hugo Carvalho; Hafiz Salman; Marco Leite. 2018. "Natural Fibre Composites and Their Applications: A Review." Journal of Composites Science 2, no. 4: 66.