Development of novel, stab-resistant protective clothing using continuous fiber-reinforced additive manufacturing: Summary of the IGF research project 21622 BR
Authors
Yordan Kyosev, Dominik MuenksFiles
Abstract
This communication is an overview of the results of the IGF research project 21622 BR Development of novel, stab-resistant protective clothing using continuous fiber-reinforced additive manufacturing. The individual steps of the processing and the further publications are summarized.
References
Muenks, D., Kyosev, Y., & Shuang, X. (2023). Curvature change of moving bodies and its application for development of protective elements for protective clothing. Communications in Development and Assembling of Textile Products, 4(2), 132–140. https://doi.org/10.25367/cdatp.2023.4.p132-140
Kyosev, Y., Muenks, D., & Kunzelmann, F. (2023). Possibilities for analysis of the motion comfort of protective clothing using high speed (4D) body scanning. In K. Kuklane & C. Mertens (Eds.), Proceedings of the 10th European Conference on Protective Clothing (pp. 50–51). Zenodo. https://doi.org/10.5281/zenodo.7944474
Muenks, D., Pilgrim, J., Kyosev, Y.: Possibilities for qualitative evaluation of the protection area of protective clothing. CDATP 3(2), 156–162 (2022). doi: 10.25367/cdatp.2022.3.p156-162
Muenks, D., Eckelmann, L., Kyosev, Y.: Non-planar 3D printed elements on textile substrate using a fused filament fabrication 3D printer. Autex Research Journal 0(0) (2022). DOI: 10.2478/AUT-2022-0026
Muenks, D., Sprenger, A.M., Kyosev, Y.: Design of additively manufactured composite elements with long and short fiber reinforcements for improved stab protection. In: Proceedings of the 20th European Conference on Composite Materials - Composites Meet Sustainability (Vol 1-6), vol. 2, pp. 1108–1114. EPFL Lausanne, Composite Construction Laboratory (2022)
