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supported by the sibling associations ACADIA, CAADRIA, eCAADe, SIGraDi, ASCAAD and CAAD futures

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id caadria2022_55
authors Dritsas, Stylianos, Hoo, Jian Li and Fernandez, Javier
year 2022
title Sustainable Rapid Prototyping with Fungus-Like Adhesive Materials
source Jeroen van Ameijde, Nicole Gardner, Kyung Hoon Hyun, Dan Luo, Urvi Sheth (eds.), POST-CARBON - Proceedings of the 27th CAADRIA Conference, Sydney, 9-15 April 2022, pp. 263-272
doi https://doi.org/10.52842/conf.caadria.2022.2.263
summary The purpose of the research work presented in this paper is to develop a sustainable rapid prototyping technology. Fused filament fabrication using synthetic polymers is today the most popular method of rapid prototyping. This has environmental repercussions because the short-lived artifacts produced using rapid prototyping contribute to the problem of plastic waste. Natural biological materials, namely Fungus-Like Adhesive Materials (FLAM) investigated here, offer a sustainable alternative. FLAM are cellulose and chitin composites with renewable sourcing and naturally biodegradable characteristics. The 3D printing process developed for FLAM in the past, targeted large-scale additive manufacturing applications. Here we assess the feasibility of increasing its resolution such that it can be used for rapid prototyping. Challenges and solutions related to material, mechanical and environmental control parameters are presented as well as experimental prototypes aimed at evaluating the proposed process characteristics.
keywords Rapid Prototyping, Sustainable Manufacturing, Digital Fabrication, Robotic Fabrication, SDG 12
series CAADRIA
email
full text file.pdf (851,275 bytes)
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100%; open Sanadiya, N., Dimopoulou, M., Vijay, Y., Dritsas, S. and Fernandez, J. (2018) Find in CUMINCAD Large-Scale Additive Manufacturing with Bioinspired Cellulosic Materials , Scientific Reports, 8, 8642, https://doi.org/10.1038/s41598-018-26985-2Sanandiya, N.D., Ottenheim, C., Phua, J.W. Caligiani, A., Dritsas, S. and Fernandez, J. (2020) Circular manufacturing of chitinous bio-composites via bioconversion of urban refuse, Scientific Reports, 10, 4632. https://doi.org/10.1038/s41598-020-61664-1

100%; open Vijay, Y., Sanadiya, G.N., Dritsas, S. and Fernandez, J. (2018) Find in CUMINCAD Control of Process Settings for Large-Scale Additive Manufacturing with Sustainable Natural Composites , International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, Design for Manufacturing and the Life Cycle, American Society of Mechanical Engineers, Quebec, Canada. https://doi.org/10.1115/DETC2018-85994

100%; open Vijay, Y., Sanadiya, G.N., Dritsas, S. and Fernandez, J. (2019) Find in CUMINCAD Control of Process Settings for Large-Scale Additive Manufacturing with Sustainable Natural Composites , Journal of Mechanical Design, 141(8): 081701. https://doi.org/10.1115/1.4042624

100%; open Wang, Q., Sun, J., Yao, Q., Ji, C., Liu, J. & Zhu, Q. (2018) Find in CUMINCAD 3D printing with cellulose materials , Cellulose, 25, 4275-4301. https://doi.org/10.1007/s10570-018-1888-y

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