Stiffness and progressive failure prediction of 2-D tri-axially braided composites
Author:
Affiliation:
1. College of Science, Inner Mongolia University of Technology, Hohhot, China
2. Inner Mongolia Synthetic Chemical Institute, Hohhot, China
3. Hohhot Land and Space Planning Institute, Hohhot, China
Abstract
Publisher
National Library of Serbia
Reference21 articles.
1. Liu, P., et al., An Elastoplastic Mechanical-Thermal Model for Temperature Rise Simulation of 2-D Tri-Axially Braided Composites Under Quasi-Static Loads, Composite Structures, 306 (2023), 116559
2. Wei, H. Y., et al., LS-DYNA Machine Learning-Based Multiscale Method for Non-linear Modeling of Short Fiber-Reinforced Composites, Journal of Engineering Mechanics, 149 (2023), 3, 04023003
3. Shokrieh, M. M., Mazloomi, M. S., An Analytical Method for Calculating Stiffness of 2-D Tri-Axial Braided Composites, Composite Structures, 92 (2010), 12, pp. 2901-2905
4. Cater, C. R., et al., Single Ply and Multi-Ply Braided Composite Response Predictions Using Modified Subcell Approach, Journal of Aerospace Engineering, 28 (2015), 5, 04014117
5. Deng, Y., et al., A Multi-Scale Correlating Model for Predicting the Mechanical Properties of Tri-Axial Braided Composites, Journal of Reinforced Plastics & Composites, 32 (2013), 24, pp. 1934-1955
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