Fabric modeling based on Riemann zero curvature
International Journal of Clothing Science and Technology
ISSN: 0955-6222
Article publication date: 16 November 2022
Issue publication date: 7 March 2023
Abstract
Purpose
Fabric has complicated anisotropic mechanical behavior because of the woven pattern and complex physical properties. However, most current fabric simulation models are not satisfied because the models are usually geometrical models with stiffness parameters.
Design/methodology/approach
In this paper, the authors present a modeling technique to simulate fabric with Riemann manifold. The proposed nonlinear model is formed with ridge wave-curved surface based on the Riemann zero curvature, and the authors develop a solution to conserve the surface area. It decomposes the m × n matrix constituting the fabric into several batches and processes the fabric dots in batches. In this model, the distance between any two adjacent particles of the fabric's is assumed to be equal, and the area of the curved surface is always constant, and the inclination and decay of the ridge wave-curved surface are also considered.
Findings
As the result, the simulated shape is lifelike. In time cost performance, the model improves the efficiency of the fabric styling and meets the requirements of real-time simulation.
Originality/value
The proposed nonlinear model is formed with ridge wave-curved surface based on the Riemann zero curvature, and the authors develop a solution to conserve the surface area.
Keywords
Acknowledgements
Funding: The research is funded by high end equipment special project (No. 2021Z069).
Citation
Hu, X., Li, S., Peng, T., Dong, S., Zhang, J., Chen, C., Zhang, Z., Cui, S., He, R., Li, M. and Liu, J. (2023), "Fabric modeling based on Riemann zero curvature", International Journal of Clothing Science and Technology, Vol. 35 No. 1, pp. 1-12. https://doi.org/10.1108/IJCST-06-2020-0083
Publisher
:Emerald Publishing Limited
Copyright © 2022, Emerald Publishing Limited