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High-Temperature Polymeric Materials: Preparation, Properties, Modeling and Engineering Applications

Editat de Emmanuel Rotimi Sadiku, Idowu David Ibrahim, Williams Kehinde Kupolati, Stephen Chinenyeze Agwuncha
en Limba Engleză Paperback – oct 2025
High-Temperature Polymeric Materials: Preparation, Properties, Modeling and Engineering Applications provides a comprehensive and up-to-date reference on the development and applications of high-temperature polymeric materials in various industries. The book begins with a thorough overview of the preparation and properties of a wide range of high-temperature polymeric materials, including nano- and polymer blend-based composites, biopolymers, and fiber-reinforced composites designed for high-temperature applications. Subsequent chapters delve into behavioral modeling of polymer composites, computational modeling of aging effects, and numerical modeling and simulation of polymer failure at elevated temperatures. The remainder of the book explores the materials' applications in industries such as automotive, aviation, aerospace, and construction. This book serves as a key reference for materials scientists, polymer scientists, and plastic engineers interested in the high-temperature applications of polymeric materials across various industries.

  • Provides a comprehensive analysis of high-temperature polymeric materials, along with their applications in industries such as automobile, aviation, aerospace, and construction
  • Reviews preparation and characterization methods, and discusses the thermodynamic properties of high-temperature polymeric materials
  • Highlights new and emerging techniques for the development of high-temperature polymers and discusses areas for future research
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Specificații

ISBN-13: 9780443327926
ISBN-10: 0443327920
Pagini: 410
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE

Cuprins

PART 1: PREPARATION AND PROPERTIES OF HIGH TEMPERATURE POLYMERS
1. High-temperature polymers: an introduction in the context of engineering
2. High-temperature polymers: methodology and factors affecting development
3. High-temperature polymers: synthesis and characterization
4. Nanocomposite-based high temperature polymers
5. Polymer blends-based high temperature composite materials
6. Fiber reinforced high temperature composite materials
7. Hybrid polymer based high temperature composite materials
8. Bio-polymer composites for high temperature applications
9. Development of high temperature polymers via 3D printing approach: properties and limitation.

PART 2 : MATERIAL MODELLING
10. Behavioral modelling of polymer composites at elevated temperature
11. Computational modelling of aging effects of high temperature composite materials
12. Numerical modelling and simulation of polymer failure at elevated temperature

PART 3 : APPLICATION
13. Application of high temperature polymers in the automotive industry
14. Application of high temperature polymers in the aviation industry
15. Application of high temperature polymers in aerospace applications
16. Application of high temperature polymers in building and construction
17. Application of high temperature bio-polymers in building and construction