Novembro 2023 vol. 12 num. 6 - 10º MXRio Design Conference 2023

Artigo - Open Access.

Idioma principal | Segundo idioma

Manufactura aditiva y reciclaje distribuido: el uso de descartes como nuevo paradigma en el diseño de objetos sostenibles

Additive manufacturing and distributed recycling: the use of discards as a new paradigm in the design of sustainable objects

MELO, João Victor CORREIA DE ;

Artigo:

Las primeras décadas del siglo XXI fueron testigo de dos acontecimientos importantes: la inserción de China en el mercado mundial de suministros y la popularización de Internet. Los más diversos segmentos de la industria se vieron afectados por una avalancha de ofertas y precios a la baja de nuevas máquinas y productos, entre ellos la(s) tecnología(s) de Manufactura Aditiva. Esta tecnología permite producir a menor escala y con valores más bajos que los métodos tradicionales de producción de artefactos. Esta conexión, combinada con la reutilización de los residuos de la producción local, puede revolucionar las cadenas de suministro y la circularidad en el desarrollo y distribución de objetos. Este trabajo demuestra el desarrollo de un sistema de fabricación aditiva alineado al reciclaje distribuido considerando sus impactos, ventajas, desventajas y posibilidades de aplicación en el escenario brasileño, en términos de sustentabilidad y circularidad de los procesos.

Artigo:

The first decades of the 21st century witnessed two major developments: the insertion of China into the global supply market and the popularization of the Internet. The most diverse segments of the industry were affected by an avalanche of offers and falling prices of new machines and products, among them the Additive Manufacturing technology(ies). This technology allows production on a smaller scale and at lower values than traditional methods of producing artifacts. This connection, combined with the reuse of waste from local production, can revolutionize supply chains and circularity in the development and distribution of objects. This work demonstrates the development of an additive manufacturing system aligned to distributed recycling considering its impacts, advantages, disadvantages and application possibilities in the Brazilian scenario, in terms of sustainability and circularity of the processes.

Palavras-chave: Manufactura aditiva, Reciclaje, Diseño para manufactura aditiva, Sostenibilidad,

Palavras-chave: Additive Manufacturing, Recycling, Design for Additive Manufacturing, Sustainability,

DOI: 10.5151/mxriodc2023-029

Referências bibliográficas
  • [1] "ANDERSON, C., (2013). Makers: The New Industrial Revolution. Random House Business, London.
  • [2] MCDONOUGH, B., BRAUNGART, M. (2002). Cradle to Cradle: Remaking the Way We Make Things. ISBN-10: 0865475873. North Point Press. USA.
  • [3] BAUMERS, M., TUCK, C., BOURELL, D.L., SREENIVASAN, R., HAGUE, R. (2011). Sustainability of additive manufacturing: measuring the energy consumption of the laser sintering process. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 225(12), 2228–2239.
  • [4] BAUMERS, M., TUCK, C., WILDMAN, R., ASHCROFT, I., ROSAMOND, E., HAGUE, R. (2013). Transparency Built-in. Journal of Industrial Ecology, 17(3), 418–431.
  • [5] BIRTCHNELL, T., & HOYLE, W. (2014). 3D Printing for Development in the Global South: The 3D4D Challenge. Basingstoke: Palgrave Macmillan.
  • [6] BOGERS, M., HADAR, R., BILBERG, A. (2016). Additive manufacturing for consumer-centric business models: Implications for supply chains in consumer goods manufacturing. Technological Forecasting & Social Change, 102, 225–239.
  • [7] BYARD, D. J., WOERN, A. L., OAKLEY, R. B., FIEDLER, M. J., SNABES, S. L., & PEARCE, J. M. (2019). Green Fab Lab Applications of Large-Area Waste Polymer-based Additive Manufacturing. Additive Manufacturing, 27, pp. 515-525.
  • [8] CHANDLER, A.D. (1990). Scale and Scope: The Dynamics of Industrial Capitalism. Cambridge MA: Harvard University Press.
  • [9] CHAVES, Luís de Gonzaga Mendes, (1971). Minorias e seu estudo no Brasil. Revista de Ciências Sociais, Fortaleza, v. 1, n. 1, p. 149-168.
  • [10] CHEN, D., HEYER, S., IBBOTSON, S., SALONITIS, K., STEINGRÍMSSON, J.G., THIEDE, S. (2015). Direct Digital Manufacturing: Definition, Evolution, and Sustainability Implications. Journal of Cleaner Production, 107, 615–625.
  • [11] DALSGAARD, Peter; HALSKOV, Kim. Reflective design documentation. In: Proceedings of the Designing Interactive Systems Conference. 2012. p. 428-437.
  • [12] DESPEISSE, M., BAUMERS, M., BROWN, P., CHARNLEY, F., FORD, S. J., GARMULEWICZ, A., ROWLEY, J. (2016). Unlocking value for a circular economy through 3D printing: a research agenda. Technological Forecasting & Social Change, p. 49.
  • [13] DOS SANTOS, J., BRANCAGLION JUNIOR, A., WERNER JUNIOR, H., & AZEVEDO, S. (2013). Tecnologias 3d: desvendando o passado e modelando o futuro [3d Technologies: unraveling the past and shaping the future]. Brazil: lexikon editora digital.
  • [14] DOS SANTOS, J., WERNER JUNIOR, H., AZEVEDO, S., & BRANCAGLION JUNIOR, A. (2019). Seen / Unseen. Brazil: rio books.
  • [15] DOS SANTOS, J. R., CORREIA DE MELO, J. V., FRAJHOF, L., & KAUFFMANN, A. R. (December de 2020). Confronting COVID-19 - The case of PPE and Medical Devices production using Digital Fabrication at PUC-Rio. SDRJ - Strategic Design Journal, p. 14.
  • [16] GRAEDEL, T.E., Allenby, B.R. (2002). Industrial ecology. Prentice Hall, Englewood Cliffs, NJ, USA.
  • [17] GUSMÃO, G. (2004). “Rua dos Inventos”, Invention street. A arte da sobrevivência • The art of survival. Rio de Janeiro: IBM.
  • [18] ILLICH, I. (1976). A Convivencialidade. Lisboa: Publicações Europa-América.
  • [19] LEARY, M. (2020). Chapter 3 - Digital design for AM. Em M. LEARY, Additive Manufacturing Materials and Technologies: Design for Additive Manufacturing (pp. 33-90). Oxford: Eselvier.
  • [20] LOVINS, A.B. (1996). Negawatts: Twelve transitions, eight improvements and one distraction. Energy Policy, 24(4), 331–343.
  • [21] KOHTALA, C., HYYSALO, S. (2015). Anticipated environmental sustainability of personal fabrication. Journal of Cleaner Production, 99, 333–344.
  • [22] KREIGER, M., ANZALONE, G., MULDER, M., GLOVER, A., & PEARCE, J. (27 de Fevereiro de 2013). Distributed Recycling of Post-Consumer Plastic Waste in Rural Areas. MRS Online Proceedings Library, 1492, 101-106.
  • [23] PETERSEN, E., & PEARCE, J. (2017). Emergence of Home Manufacturing in the Developed World: Return on Investment for Open-Source 3-D Printers. (MDPI, Ed.) Technologies, 5(7), p. 15. doi:10.3390/technologies5010007.
  • [24] WITTER, D. (2015). Plastic & Resin Manufacturing in the US. IBIS World Industry Report 32521.
  • [25] ZIMMERMAN, John; FORLIZZI, Jodi; EVENSON, Shelley. Research through design as a method for interaction design research in HCI. In: Proceedings of the SIGCHI conference on Human factors in computing systems. 2007. p. 493-502. DOI: https://doi.org/10.1145/1240624.1240704"
Como citar:

MELO, João Victor CORREIA DE; "Manufactura aditiva y reciclaje distribuido: el uso de descartes como nuevo paradigma en el diseño de objetos sostenibles", p. 402-415 . In: 10º MXRio Design Conference 2023. São Paulo: Blucher, 2023.
ISSN 2318-6968, DOI 10.5151/mxriodc2023-029

últimos 30 dias | último ano | desde a publicação


downloads


visualizações


indexações