Mechanical Behavior of Fiber-reinforced Polymer Composites
Fundamentals, Advanced Studies, and Current Trends
Series: Woodhead Publishing Series in Composites Science and Engineering;
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118 199 Ft (112 571 Ft + 5% VAT)
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118 199 Ft
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Product details:
- Publisher Elsevier Science
- Date of Publication 1 July 2026
- ISBN 9780443342769
- Binding Paperback
- No. of pages680 pages
- Size 229x152 mm
- Language English 700
Categories
Long description:
Mechanical Behavior of Fiber-reinforced Polymer Composites: Fundamentals, Advanced Studies, and Current Trends offers a thorough exploration of key advancements in the study of fiber-reinforced polymer composites. The book begins by outlining the basic principles that govern the mechanical properties of both polymers and fibers, delving into how their interaction determines composite performance. It provides an extensive overview of essential materials, manufacturing techniques, and various testing methodologies such as tensile, compression, flexural, impact, and fatigue tests. By examining how fiber orientation and production processes influence mechanical outcomes, this reference helps readers understand the factors affecting composite strength and behavior.
The text also dedicates significant attention to failure mechanisms like delamination, matrix cracking, and fiber breakage, offering detailed explanations of each. It explores the effects of environmental aging on outdoor applications and integrates contemporary topics including numerical analysis, modeling, and artificial intelligence methods.
Table of Contents:
1. Fundamentals of fiber-reinforced polymer composites
2. Automation in manufacturing of fiber-reinforced polymer composites
3. Manufacturing defects and its effect on performance of fiber-reinforced polymer composites
4. Non-destructive testing and structural health monitoring of fiber-reinforced polymer composites
5. Mechanical properties of composites’ constituent materials
6. Importance of fiber orientation and its influence of mechanical properties
7. Fiber treatment and its effect on mechanical behavior of fiber-reinforced polymer composites
8. Polymer blends for enhanced mechanical properties
9. Fiber hybridization and its effect on mechanical behavior of fiber-reinforced polymer composites
10. Manufacturing techniques for fiber-reinforced polymer composites
11. Static mechanical testing of fiber-reinforced polymer composites
12. Dynamic mechanical testing and fatigue testing of fiber-reinforced polymer composites
13. Failure mechanism and analysis of fiber-reinforced polymer composites
14. Effect of aging on mechanical properties
15. Mechanical behavior of natural fiber-reinforced polymer composites
16. Mechanical behavior of synthetic fiber-reinforced polymer composites
17. Characterization of fiber-reinforced polymer composites
18. Numerical analysis of mechanical properties
19. Modeling the mechanical behavior of fiber-reinforced polymer composites
20. Artificial intelligence for analyzing mechanical behavior
21. Recycling of fiber-reinforced composites and its end-of-life and eco-design
22. Applications of fiber-reinforced polymer composites
23. Current trends and future perspectives for fiber-reinforced composites