Abstract
In this article, an experimental investigation was conducted to study the effects of 3D printed structured fabrics on the tensile strength of two additive manufacturing technologies: (i) fused deposition modeling (FDM); and (ii) stereolithography (SLA). Three types of structured fabrics were designed in a linked fabric structure, which resembled the main characteristics of a conventional textile. Through computer-aided design (CAD), the textile structures were sketched, which, in a STL format, were transferred to 3D printing software, and consequently, they were printed. The specimens were subjected to tensile tests to analyse the behaviour of the linked structures under tensile loads. The results obtained indicated that the elements structured in a linked fabric pattern showed a statistically significant effect between the design of the 3D printed structured fabric and its tensile strength. Some important properties in textiles, fabric areal density, fineness (tex) and fabric flexibility were also analysed. This study opens an important field of research on the mechanical resistance of textile structures manufactured by 3D printing, oriented for applications in wearables that have a promising future in the fields of medicine, aerospace, sports, fashion, etc.
| Original language | English |
|---|---|
| Article number | 152 |
| Journal | Polymers |
| Volume | 15 |
| Issue number | 1 |
| DOIs | |
| State | Published - Jan 2023 |
Bibliographical note
Funding Information:This research was funded by Universidad Politécnica Salesiana within the framework of the research project Resolution: N° 009-008-2021-11-11.
Publisher Copyright:
© 2022 by the authors.
Keywords
- additive manufacturing
- fabric weave
- structured fabrics
- wearables
CACES Knowledge Areas
- 227A Materials
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Dive into the research topics of 'Experimental Analysis of the Relationship between Textile Structure, Tensile Strength and Comfort in 3D Printed Structured Fabrics'. Together they form a unique fingerprint.Projects
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Utilization of Agroindustrial Lignocellulosic Waste and Recycled Polymeric Materials for the Production of Composite Materials and Bioethanol in Biorefinery Concepts
Fajardo Seminario, J. I. (PI), Lopez Lopez, L. M. (Col), Pelaez Samaniego, M. R. (External), Vintimilla Alvarez, P. (External), Vanegas, M. E. (External), Saetama Guallpa, V. (External), Alvarez Maldonado, K. A. (Student), Andrade Coronel, C. I. (Student), Rengel Rivera, P. J. (Student), Perez Alarcon, P. A. (Student) & Matute Pugo, J. A. (Student)
21/11/19 → 30/12/23
Project: Research and Development
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