Fatigue of textile and random fibre reinforced composites 1st edition by Valter Carvelli, Atul Jain, Stepan Lomov – Ebook PDF Instant Download/Delivery: 1786300214, 978-1786300218
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Product details:
ISBN 10: 1786300214
ISBN 13: 978-1786300218
Author: Valter Carvelli, Atul Jain, Stepan Lomov
This book covers several aspects of the fatigue behavior of textile and short fiber reinforced composites. The first part is dedicated to 2D and 3D reinforced textile composites and includes a systematic description of the damage evolution for quasi-static and tensile-tensile fatigue loadings. Acoustic emissions and digital image correlation are considered in order to detect the damage modes’ initiation and development. The acoustic emission thresholds of the quasi-static loading are connected to the “fatigue limit” of the materials with distinctions for glass and carbon reinforcements.
The second part is devoted to the fatigue behavior of injection molded short fiber reinforced composites. Experimental evidence highlights the dependence of their fatigue response on various factors: fiber and matrix materials, fiber distribution, environmental and loading conditions are described. A hybrid (experimental/simulations) multi-scale method is presented, which drastically reduces the amount of experimental data necessary for reliable fatigue life predictions.
Fatigue of textile and random fibre reinforced composites 1st Table of contents:
PART 1: Fatigue of Textile Composites
1 Fatigue Behavior and Damage Evolution of 2D and 3D Textile-Reinforced Composites
1.1. Introduction
1.2. Experimental methodologies
1.3. Fatigue behavior and damage evolution in 2D E-glass plain weave textile-reinforced epoxy composite
1.4. Fatigue behavior and damage evolution in single-ply non-crimp 3D orthogonal weave E-glass reinforced epoxy composite
1.5. Fatigue behavior and damage evolution in 3D rotary braided carbon reinforced epoxy composite
1.6. Fatigue behavior and damage evolution in non-crimp stitched and unstitched carbon reinforced epoxy composite
1.7. Remarks and perspectives
1.8. Bibliography
2 Fatigue Limit: A Link to Quasi-Static Damage?
2.1. Fatigue limit
2.2. Damage development stages and load thresholds for quasi-static tension
2.3. Damage development in quasi-static tension and in the progression of fatigue loading
2.4. Experimental data on the fatigue limit and the quasi-static damage thresholds for textile composites
2.5. Summary and conclusion on the fatigue life limit
2.6. Bibliography
PART 2: Fatigue of Short Fiber Reinforced Composites
3 Experimental Observations of Fatigue of Short Fiber Reinforced Composites
3.1. Injection molded SFRC
3.2. SN curve behavior of SFRC
3.3. Loss of stiffness
3.4. Future outlook and modeling strategy
3.5. Bibliography
4 Fatigue Modeling of SFRC: A Master SN Curve Approach
4.1. Overall framework and modeling strategy
4.2. Choice of a mean field homogenization method
4.3. Damage modeling
4.4. MSNC approach
4.5. Component-level simulations
4.6. Conclusions and future outlook
4.7. Bibliography
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