Measuring the Flex Life of Conductive Yarns in Narrow Fabric †
Abstract
:1. Introduction
2. Materials and Methods
2.1. Samples
- Multifilament Ni-plated copper yarn consisting of 6 filaments twisted around a polyester core. The twisted filaments were protected by a Teflon coating. The average resistance of the yarn was 0.8 ohm/m and the outer diameter was 0.60 mm.
- Multifilament copper-plated steel yarn consisting of 14 twisted filaments. The filaments were protected by a Teflon coating. The average resistance of the yarn was 0.99 ohm/m and the outer diameter was 0.68 mm.
2.2. Machine
- stepper motor Nema 17;
- Arduino UNO microcontroller together with Motorshield V2 board;
- Adafruit ADC1115 (analogue-to-digital converter) together with male 90-degree pins.
2.3. Testing Method
3. Results
4. Conclusions and Future Work
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- De Pasquale, G.; Mura, A. Accelerated lifetime tests on e-textiles: Design and fabrication of multifunctional test bench. J. Ind. Text. 2018, 47, 1925–1943. [Google Scholar] [CrossRef]
- Zaman, S.U.; Tao, X.; Cochrane, C.; Koncar, V. Wash Analyses of Flexible and Wearable Printed Circuits for E-Textiles and Their Prediction of Damages. Electronics 2021, 10, 1362. [Google Scholar]
- Bolton, W. I/O Processing. In Programmable Logic Controllers, 6th ed.; Bolton, W., Ed.; Newnes: Boston, MA, USA, 2015; Chapter 4; pp. 79–113. [Google Scholar] [CrossRef]
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Share and Cite
Veske, P.; Bossuyt, F.; Thielemans, F.; Vanfleteren, J. Measuring the Flex Life of Conductive Yarns in Narrow Fabric. Eng. Proc. 2023, 30, 3. https://doi.org/10.3390/engproc2023030003
Veske P, Bossuyt F, Thielemans F, Vanfleteren J. Measuring the Flex Life of Conductive Yarns in Narrow Fabric. Engineering Proceedings. 2023; 30(1):3. https://doi.org/10.3390/engproc2023030003
Chicago/Turabian StyleVeske, Paula, Frederick Bossuyt, Filip Thielemans, and Jan Vanfleteren. 2023. "Measuring the Flex Life of Conductive Yarns in Narrow Fabric" Engineering Proceedings 30, no. 1: 3. https://doi.org/10.3390/engproc2023030003
APA StyleVeske, P., Bossuyt, F., Thielemans, F., & Vanfleteren, J. (2023). Measuring the Flex Life of Conductive Yarns in Narrow Fabric. Engineering Proceedings, 30(1), 3. https://doi.org/10.3390/engproc2023030003