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Composite Materials

Manufacturing, Properties and Applications

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2021
ISBN13: 9780128205129
Rubricering
Elsevier Science e druk, 2021 9780128205129
€ 331,00
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Samenvatting

Composite materials have been well developed to meet the challenges of high-performing material properties targeting engineering and structural applications. The ability of composite materials to absorb stresses and dissipate strain energy is vastly superior to that of other materials such as polymers and ceramics, and thus they offer engineers many mechanical, thermal, chemical and damage-tolerance advantages with limited drawbacks such as brittleness.

Composite Materials: Manufacturing, Properties and Applications presents a comprehensive review of current status and future directions, latest technologies and innovative work, challenges and opportunities for composite materials. The chapters present latest advances and comprehensive coverage of material types, design, fabrication, modelling, properties and applications from conventional composite materials to advanced composites such as nanocomposites, self-healing and smart composites. The book targets researchers in the field of advanced composite materials and ceramics, students of materials science and engineering at the postgraduate level, as well as material engineers and scientists working in industrial R& D sectors for composite material manufacturing.

Specificaties

ISBN13:9780128205129
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>Manufacturing</p> <p>1. Futuristic synthesis strategies for aluminum-based metal-matrix composites<br>2. Geopolymer composites modified with nanomaterials<br>3. Advanced hybrid fiber-reinforced composites for high material performance<br>4. 3-D printing composite materials: A comprehensive review<br>5. Fiber composites of inorganic polymers (geopolymers) reinforced with natural fibers</p> <p>Properties</p> <p>6. Interphase and interfacial properties of composite materials<br>7. Durability and life prediction of fiber-reinforced polymer composites<br>8. Composites for structural strengthening, repair, rehabilitation, and retrofit<br>9. Vinyl-ester composites reinforced with natural fibers and nanofillers<br>10. Fracture mechanics of composites: Reinforcement of short carbon and glass fibers<br>11. Mechanical properties of recycled polyethylene terephthalate (PET) fiber-reinforced fly ash geopolymer and fly ash-slag-blended geopolymer composites<br>12. Thermal damage in carbon-fiber-reinforced polymer composites: A critical review<br>13. Self-healing and self-sensing smart polymer composites<br>14. Lightning strike damage on carbon fiber-reinforced composites: Prediction and protection<br>15. Fire behavior and flame-retardant properties of application-oriented fiber-reinforced polymers (FRPs)</p> <p>Applications</p> <p>16. Advances in multistable composite structures and their applications<br>17. Intelligent composite materials for use as sensors and actuators<br>18. High-temperature superlubricity behaviors of γ-Fe2O3@SiO2 nanocomposite coatings<br>19. Polymeric composites for X-ray shielding applications<br>20. Synthesis of nuclear-grade nano-sized boron carbide powders and its application in LDPE matrix composites for neutron shielding<br>21. Shape memory polymer composites and their smart structural applications<br>22. Analysis of architecture and performance of three-dimensional braided composites<br>23. Biomass-derived porous carbon nanostructures for supercapacitor applications</p>
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        Composite Materials