Biallas A, Merklein M (2021)
Publication Language: English
Publication Type: Conference contribution, Conference Contribution
Publication year: 2021
Publisher: Trans Tech Publications LTD
City/Town: Zurich, Switzerland
Book Volume: 883
Pages Range: 277-284
Conference Proceedings Title: Key Engineering Materials
DOI: 10.4028/www.scientific.net/KEM.883.277
Concrete, which is reinforced by steel fibers, represents a multifunctional building material that is able to realize flexible but stable structures. As an alternative to the energy-intensive conventional production procedure wire drawing, a combination of a notch rolling and cyclic bending process is proposed by Stahl [1] to produce those fibers. Besides representing the properties of steel fibers and the overall process, the paper brings the layout of both process steps into focus. Since notch rolling for the production of wire strip is mainly unexplored, a general conceptual design of the process and the rolling tools is performed, supplemented by a similar study on the fulling process. To enable a further evaluation of the process chain and its relevant process parameters, a numerical and experimental test phase using strip of a dual phase steel DP600 with a sheet thickness of t0 = 0.8 mm is intended in future. For ensuring high-quality numerical model, relevant behavior of the test strip is characterized through appropriate experiments and according material models in the present paper.
APA:
Biallas, A., & Merklein, M. (2021). Material Model for the Production of Steel Fibers by Notch Rolling and Fulling. In Merklein, M.; Duflou, J.; Fratini, L.; Hagenah, H.; Martins, P.; Meschut, G.; Micari, F. (Eds.), Key Engineering Materials (pp. 277-284). Erlangen, DE: Zurich, Switzerland: Trans Tech Publications LTD.
MLA:
Biallas, Alina, and Marion Merklein. "Material Model for the Production of Steel Fibers by Notch Rolling and Fulling." Proceedings of the 19th International Conference on Sheet Metal (SheMet 2021), Erlangen Ed. Merklein, M.; Duflou, J.; Fratini, L.; Hagenah, H.; Martins, P.; Meschut, G.; Micari, F., Zurich, Switzerland: Trans Tech Publications LTD, 2021. 277-284.
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