Additive manufacturing of customized automotive components using novel cellulose fiber reinforced abs polymer filament

Author:

S PonsuriyaprakashORCID,P Udhayakumar,A Hemalatha,S Sabarish

Publisher

Springer Science and Business Media LLC

Subject

Industrial and Manufacturing Engineering,Modeling and Simulation

Reference27 articles.

1. Abdellah, M.Y., Fathi, H.I., Abdelhaleem, A.M., Dewidar, M.: Mechanical Properties and wear behavior of a Novel Composite of Acrylonitrile–Butadiene Styrene strengthened by short Basalt Fiber. J. of Compos. Sci. 2, 1–12 (2018)

2. Abdulhameed, O., Al-Ahmari, A., Ameen, W., Mian, S.H.: Additive manufacturing: Challenges, trends, and applications. Adv. Mech. Eng. 11, 1–27 (2019)

3. Ali, M.H., Yerbolat, G., Kurokawa, S.: Modeling and simulation of multi-materials for additive manufacturing. Int. J. Interact. Des. Manuf. 14, 1057–1069 (2020)

4. Chuanchom Aumnate, Soatthiyanon, N., Makmoon, T.: Pranut Potiyaraj.: Polylactic acid/kenaf cellulose bio-composite filaments for melt extrusion based-3D printing. Cellulose. 13, 1–16 (2021)

5. Component Part Testing & Small Entity Compliance Guide:. : U.S. Consumer Product Safety Commission, (2022). https://www.cpsc.gov/BusinessManufacturing/Testing-Certification/Third Party Testing/Component Part Testing Accessed October 15, 2022

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1. Revolutionizing transportation: an overview of 3D printing in aviation, automotive, and space industries;The International Journal of Advanced Manufacturing Technology;2024-09-05

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