In-situ characterization and multiscale finite element analyses for thermomechanical behavior of 3D woven composites
Author:
Publisher
Elsevier BV
Subject
General Engineering,Ceramics and Composites
Reference20 articles.
1. Microscopic residual stresses analysis and multi-objective optimization for 3D woven composites;Wang;Composites A,2021
2. A methodology for predicting processing induced thermal residual stress in thermoplastic composite at the microscale;Parambil;Composites B,2022
3. Impact of process induced residual stresses on interlaminar fracture toughness in carbon epoxy composites;Umarfarooq;Composites A,2019
4. Multiscale numerical and experimental investigation into the evolution of process-induced residual strain/stress in 3D woven composite;Wang;Composites A,2020
5. Potential use of CNTs for production of zero thermal expansion coefficient composite materials: An experimental evaluation of axial thermal expansion coefficient of CNTs using a combination of thermal expansion and uniaxial tensile tests;Shirasu;Composites A,2017
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1. Resolving 3D microstructure evolution of ceramifiable composites at elevated temperatures using in-situ X-ray computed tomography;Composites Part A: Applied Science and Manufacturing;2024-02
2. Enhancing bending performance in 3D woven spacer composites with lightweight biomimetic integrated double‐spacer structure;Polymer Composites;2023-12-31
3. Electromechanical behavior and damage index system of 3D carbon fiber angle-interlock woven composites with FEA and data processing tools;Composites Science and Technology;2023-11
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