
eBook - ePub
Advanced Fiber-Reinforced Alkali-Activated Composites
Design, Mechanical Properties, and Durability
- 522 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
eBook - ePub
Advanced Fiber-Reinforced Alkali-Activated Composites
Design, Mechanical Properties, and Durability
About this book
Advanced Fiber-Reinforced Alkali-Activated Composites: Design, Mechanical Properties, and Durability covers various fiber types and their usage as a sustainable material as well as their influence on mechanical properties and behavior, including compressive strength, tensile strength, flexural strength, and impact and bond resistance. Their durability in different environments (seawater, magnesium sulphate, sulphuric acid, elevated temperature, corrosive) is also discussed. The book also outlines a variety of mix design and curing regimes for alkali-activated composites. The additive manufacturing of these composites is also covered.
Different types of fiber-reinforced alkali-activated composites discussed include steel fiber-reinforced, carbon fiber-reinforced, natural fiber-reinforced, synthetic fiber-reinforced, and others.
- Discusses different fiber types and their effects on alkali-activated composite materials
- Includes coverage of compressive strength, tensile strength, flexural strength, impact and bond resistance, and more
- Investigates the durability of these materials, studying how they perform in seawater, elevated temperature environments, and under sulphuric acid attacks
- Covers the shrinkage resistance, permeability and corrosion performance of these materials
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Yes, you can access Advanced Fiber-Reinforced Alkali-Activated Composites by Abdulkadir Çevik,Anıl Niş in PDF and/or ePUB format, as well as other popular books in Physical Sciences & Inorganic Chemistry. We have over one million books available in our catalogue for you to explore.
Information
Table of contents
- Advanced Fiber-Reinforced Alkali-Activated Composites
- 1 Introduction to fiber-reinforced alkali-activated composites
- 2 Fiber classifications and physical and mechanical properties of different fibers used in alkali-activated composites
- 3 Mix design for the high performance of fiber-reinforced alkali-activated composites
- 4 Rheology of fiber-reinforced alkali-activated composites
- 5 3D printing of the fiber-reinforced alkali-activated composites
- 6 Mixing methods and fresh state properties of fiber-reinforced one-part alkali-activated composites
- 7 The effect of curing regimes on fiber-reinforced alkali-activated composites
- 8 Mechanical performance of steel fiber-reinforced alkali-activated composites
- 9 Mechanical performance of carbon fiber-reinforced alkali-activated composites
- 10 Mechanical performance of inorganic polymer fiber-reinforced alkali-activated composites
- 11 Mechanical performance of natural fiber-reinforced alkali-activated composites
- 12 Mechanical performance of synthetic fiber-reinforced alkali-activated composites
- 13 Durability of steel fiber-reinforced alkali-activated composites
- 14 Strength and durability properties of alkali-activated concrete comprising glass fibers
- 15 Durability of inorganic fiber-reinforced alkali-activated composites
- 16 Durability of natural fiber-reinforced alkali-activated composites
- 17 Durability of synthetic fiber-reinforced alkali-activated composites
- 18 Durability of hybrid fiber-reinforced alkali-activated composites
- Index