Fatigue of Textile Composites: Woodhead Publishing Series in Composites Science and Engineering
Editat de Valter Carvelli, Stepan V Lomoven Limba Engleză Hardback – 26 mai 2015
As this particular group of composite materials is extremely important for a wide variety of industrial applications, including automotive, aeronautical, and marine, etc., mainly due to their peculiarities and advantages with respect to unidirectional laminated composites, the text presents comprehensive information on the huge variety of interlacement geometric architectures that are suitable for a broad range of different applications, their excellent drapability and versatility, which is highly important for complex double-curvature shape components and three-dimensional woven fabrics without plane reinforcement, and their main mechanical characteristics which are currently in high demand from industry.
- Presents the current state-of-the-art investigations on fatigue behavior of composite materials, mainly those reinforced with textiles
- Contains invaluable information pertaining to a wide variety of industries, including automotive, aeronautical, and marine, amongst others
- Provides comprehensive information on the huge variety of interlacement geometric architectures that are suitable for a broad range of different applications
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Specificații
ISBN-13: 9781782422815
ISBN-10: 1782422811
Pagini: 510
Dimensiuni: 152 x 229 x 30 mm
Greutate: 0.85 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Composites Science and Engineering
ISBN-10: 1782422811
Pagini: 510
Dimensiuni: 152 x 229 x 30 mm
Greutate: 0.85 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Composites Science and Engineering
Cuprins
Part I. Concepts and methods
1. A conceptual framework for studies of durability in composite materials
2. The "cycle jump" concept for modelling high cycle fatigue in composite materials
3. Experimental methods and standards for fatigue of fibre-reinforced composites
4. Databases for fatigue analysis in composite materials
Part II. Fatigue at micro-level
5. Fatigue analysis of carbon, glass and other fibres
6. Multiaxial fatigue of a unidirectional ply: An experimental top-down approach
7. Modelling the crack initiation in UD laminates under multiaxial fatigue loading
Part III. Phenomenology and modelling of fatigue in different textile composites
8. 2D woven fabric composites under fatigue loading of different types and in different environmental conditions
9. Fatigue response and damage evolution in 2D textile composites
10. Fatigue damage evolution in 3D textile composites
11. Fatigue of 3D textile reinforced composites
12. Fatigue of non-crimp fabric composites
13. Fatigue models for woven textile composite laminates
14. Modelling high cycle fatigue of textile composites on the unit cell level
Part IV. Applications
15. Fatigue testing and online inspection of carbon textile composites for aeronautical applications
16. Textile composites in automotive industry
17. Fatigue life in textile composites used for wind energy engineering
18. Construction engineering: fatigue life prediction of adhesively bonded textile composites
1. A conceptual framework for studies of durability in composite materials
2. The "cycle jump" concept for modelling high cycle fatigue in composite materials
3. Experimental methods and standards for fatigue of fibre-reinforced composites
4. Databases for fatigue analysis in composite materials
Part II. Fatigue at micro-level
5. Fatigue analysis of carbon, glass and other fibres
6. Multiaxial fatigue of a unidirectional ply: An experimental top-down approach
7. Modelling the crack initiation in UD laminates under multiaxial fatigue loading
Part III. Phenomenology and modelling of fatigue in different textile composites
8. 2D woven fabric composites under fatigue loading of different types and in different environmental conditions
9. Fatigue response and damage evolution in 2D textile composites
10. Fatigue damage evolution in 3D textile composites
11. Fatigue of 3D textile reinforced composites
12. Fatigue of non-crimp fabric composites
13. Fatigue models for woven textile composite laminates
14. Modelling high cycle fatigue of textile composites on the unit cell level
Part IV. Applications
15. Fatigue testing and online inspection of carbon textile composites for aeronautical applications
16. Textile composites in automotive industry
17. Fatigue life in textile composites used for wind energy engineering
18. Construction engineering: fatigue life prediction of adhesively bonded textile composites