Please use this identifier to cite or link to this item: https://hdl.handle.net/10356/160680
Title: Modelling the stiffness of plastic springs manufactured via additive manufacturing
Authors: Sacco, Enea
Moon, Seung Ki
Keywords: Engineering::Mechanical engineering
Issue Date: 2022
Source: Sacco, E. & Moon, S. K. (2022). Modelling the stiffness of plastic springs manufactured via additive manufacturing. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 236(5), 486-497. https://dx.doi.org/10.1177/09544054211038282
Journal: Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture
Abstract: The helical spring is one of the most used components in mechanisms but there is little research on the application of 3D printing, also called Additive Manufacturing, to springs. Therefore, the objective of this paper is to derive a model for the stiffness of 3D printed springs. The equation assumes that springs are made of orthotropic material and with a rectangular wire cross-section, that is, die springs. A second version of the equation has also been postulated that accounts for the misalignment of the deposited tracks with respect to the direction of the coils due to the coil pitch. The two models are compared to various springs printed with PLA and ULTEM 9085 and are found to accurately predict the stiffness of real, 3D printed springs. These equations allow the design and manufacturing of helical die springs for applications with few load cycles and that require chemical and radiation resistance, such as in space. The equations are also the first step in the development of models for new kinds of springs, such as linear conical springs or hollow wire die springs.
URI: https://hdl.handle.net/10356/160680
ISSN: 0954-4054
DOI: 10.1177/09544054211038282
Schools: School of Mechanical and Aerospace Engineering 
Research Centres: Singapore Centre for 3D Printing 
Rights: © 2021 IMechE. All rights reserved.
Fulltext Permission: none
Fulltext Availability: No Fulltext
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