
Natural Fiber-Reinforced Composites
Thermal Properties and Applications
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Natural Fiber-Reinforced Composites
Thermal Properties and Applications
About this book
Natural Fiber-Reinforced Composites
In-depth overview of thermal analysis of natural fiber-reinforced composites
In Natural Fiber-Reinforced Composites: Thermal Properties and Applications, a team of distinguished researchers has delivered a comprehensive overview of the thermal properties of natural fiber-reinforced polymer composites. The book brings together information currently dispersed throughout the scientific literature and offers viable and environmentally friendly alternatives to conventional composites. The book highlights the thermal analysis of natural fiber-reinforced composites with techniques such as Thermogravimetric Analysis, Dynamic Mechanical Analysis, Thermomechanical Analysis, Differential Scanning Calorimetry, etc. This book provides:
- A thorough review of the thermal characterization of natural fiber-based hybrid composites
- Detailed investigation of the thermal properties of polymer composites reinforced with various natural fibers such as flax fiber, pineapple leaf fiber, sisal, sugar palm, grass fiber and cane fiber
- Discussions on the thermal properties of hybrid natural fiber-reinforced composites with various thermosetting and thermoplastic polymers
- Influence of nanofillers on the thermal stability and thermal decomposition characteristics of the natural fiber-based hybrid composites
Natural Fiber-Reinforced Composites: Thermal Properties and Applications is a must-read for materials scientists, polymer chemists, and professionals working in the industry. This book is ideal for readers seeking to make an informed decision regarding materials selection for applications involving thermal insulation and elevated temperature. The suitability of natural fiber-reinforced composites in the automotive, mechanical, and civil engineering sectors is highligted.
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Information
Table of contents
- Cover
- Table of Contents
- Title Page
- Copyright
- Preface
- 1 Thermal Characterization of the Natural Fiber-Based Hybrid Composites: An Overview
- 2 Thermal Properties of Hybrid Natural Fiber-Reinforced Thermoplastic Composites
- 3 Thermal Properties of the Natural Fiber-Reinforced Hybrid Polymer Composites: An Overview
- 4 Thermal Properties of Sugar Palm Fiber-Based Hybrid Composites
- 5 Thermal Properties of Sisal Fiber-Based Hybrid Composites
- 6 Thermal Properties of Flax Fiber Hybrid Composites
- 7 Thermal Properties of the Pineapple Leaf Fiber-Based Hybrid Composites
- 8 Thermal Properties of the Grass/Cane Fiber-Based Hybrid Composites
- 9 Thermal Properties of the Banana Fiber-Based Hybrid Composites
- 10 Thermal Properties of Kenaf Fiber-Based Hybrid Composites
- 11 Thermal Properties of Hemp Fiber-Based Hybrid Composites
- 12 Thermal Properties of Cellulose Nanofibers and Their Composites
- 13 Influence of Graphene Nanoparticles on Thermal Properties of the Natural Fiber-Based Hybrid Composites
- 14 Influence of Nanoclay on the Thermal Properties of the Natural Fiber-Based Hybrid Composites
- 15 Effect of CNT Fillers on Thermal Properties of the Bamboo Fiber-Based Hybrid Composites
- 16 Effect of Metal Oxide Fillers on Thermal Properties of the Natural Fiber-Based Hybrid Composites
- 17 Influence of Chemical Treatments on the Thermal Properties of Natural Fiber-Reinforced Hybrid Composites (NFRHC)
- 18 Physical, Mechanical, and Thermal Properties of Fiber-Reinforced Hybrid Polymer Composites
- Index
- End User License Agreement