Rubber Composites : Recycling, Processing, Properties, Design and Applications

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Rubber Composites : Recycling, Processing, Properties, Design and Applications

  • 言語:ENG
  • ISBN:9780443236204
  • eISBN:9780443236198

ファイル: /

Description

Rubber composites are manufactured by blending rubber with other materials such as fibers, fillers, and other polymers. Recycling, processing, properties, and design aspects are all significant factors that need to be considered when working with these materials.Rubber Composites: Recycling, Processing, Properties, Design and Applications provides an extensive review of recent advances in this important research field.The chapters cover the processing, structure, properties, and applications of rubber-based composites. These are versatile materials and with the appropriate design planning, manufacturing process, and properties, these materials can be tailored to meet specific industrial requirements with enhanced performance and sustainability.This book will be a valuable reference source for academic and industrial researchers, materials scientists and engineers, polymer chemists, and industrial manufacturers working in the research and development of rubber-based composites and their related products.- Covers a broad range of material types- Discusses practical design steps, economic aspects, modern manufacturing, characterization techniques, and recycling- Presents both fundamentals and applied aspects- Includes modern applications such as automotive mounting, automotive components, and high voltage electrical vehicles

Table of Contents

Part One: Manufacturing of Rubber Composites1. Introduction to Rubber2. Preparation and Properties of Halloysite Nanotube-Filled Epoxidized Natural Rubber3. Surface Treatment and Processing of Thermoplastic Elastomer-Filled Natural Fillers CompositesPart Two: Characterization of Rubber Composites4. Ferrite-filled Rubber Composites: Characterization and Properties5. Characterization and Properties of Sepiolite-Filled Natural Rubber Composites6. Biodegradation Behavior of Polylactic Acid/Rubber/Kenaf Biocomposites Via Soil BurialPart Three: Performance of Rubber Composites7. Enhancement of properties of Natural Rubber Composites with Cellulose Blends8. Comparison of unfilled and filled natural rubber latex/unvulcanized silicone rubber/graphene nanoplatelet conductive material9. The Effect of Coconut Shell Powder on the Mechanical Properties of Polylactic Acid/ Silicone Rubber Blend10. The Influence of Coated-Carbon Nanofiber (CCNF) in Styrene-Butadiene Rubber (SBR) for Automotive ComponentsPart Four: Modelling and design of Rubber Composites11. Rubber Composites Design for High-Voltage Insulation in Electric Vehicles12. Rubber Composites for Automotive Mounting DesignPart Five: Applications of Rubber Composites13. Application of Lignin in Rubber Composites and Future Trends14. Nitrile Rubber-based Composites15. Rubber Composites with Functional Natural Rubber/Carboxyl Group BlendsPart Six: Recycling of Rubber Composites16. Recycling Medical Rubber Waste: Developing New Fillers for Rubber Composites17. Conclusion and Future Remarks

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