Multifunctional Cement Based Materials 1st Edition by Deborah Chung – Ebook PDF Instant Download/Delivery:9781482293098, 0824746104
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Product details:
ISBN 10: 0824746104
ISBN 13: 9781482293098
Author: Deborah D. L. Chung
Unique in its focus on functional properties, this book examines the resistive, piezoresistive, thermoelectric, and electromagnetic behavior of multifunctional cement-based materials for reduced cost, improved durability and maintenance, and optimization of various structural designs. The author analyzes cement-based compounds for enhancing a wide-range of structures, including buildings, bridges, highways, automobiles, and aircrafts, exploring characteristics such as vibration damping, strain sensing, electromagnetic and magnetic shielding, electrical conductivity, and thermal insulation for improved structure stability and performance.
Multifunctional Cement Based Materials 1st Table of contents:
1 Introduction to Cement-Based Materials
1.1 Background on cement-based materials
1.2 Improving cement-based materials by using silica fume
- 1.2.1 Introduction
- 1.2.2 Workability
- 1.2.3 Mechanical properties
- 1.2.4 Vibration damping capacity
- 1.2.5 Sound absorption
- 1.2.6 Freeze-thaw durability
- 1.2.7 Abrasion resistance
- 1.2.8 Shrinkage
- 1.2.9 Air void content and density
- 1.2.10 Permeability
- 1.2.11 Steel rebar corrosion resistance
- 1.2.12 Alkali-silica reactivity reduction
- 1.2.13 Chemical attack resistance
- 1.2.14 Bond strength to steel rebar
- 1.2.15 Creep rate
- 1.2.16 Coefficient of thermal expansion
- 1.2.17 Specific heat
- 1.2.18 Thermal conductivity
- 1.2.19 Fiber dispersion
- 1.2.20 Defect dynamics during elastic deformation
- 1.2.21 Dielectric constant
- 1.2.22 Conclusion
1.3 Improving cement-based materials by using short fibers
1.4 Improving cement-based materials by interface engineering
- 1.4.1 Introduction
- 1.4.2 Steel rebar surface treatments for interface engineering
- 1.4.3 Admixture surface treatments for interface engineering
- 1.4.4 Admixtures for interface engineering
- 1.4.5 Conclusion
1.5 Improving cement-based materials by corrosion protection
- 1.5.1 Introduction
- 1.5.2 Steel surface treatment
- 1.5.3 Admixtures in concrete
- 1.5.4 Surface coating on concrete
- 1.5.5 Cathodic protection
- 1.5.6 Steel replacement
- 1.5.7 Conclusion
2 Introduction to Multifunctional Cement-Based Materials
2.1 Structural applications
2.2 Multifunctionality and electrical conduction behavior
2.3 Background on electrical conduction behavior
- 2.3.1 Charge transport
- 2.3.1.1 Transport due to voltage gradient
- 2.3.1.2 Transport due to charge carrier concentration gradient
- 2.3.1.3 Einstein relationship
- 2.3.2 Electronic energy bands
- 2.3.3 Metals, insulators, composites, and semiconductors
- 2.3.3.1 Metals
- 2.3.3.2 Insulators
- 2.3.3.3 Composites
- 2.3.3.4 Semiconductors
- 2.3.4 Temperature dependence of electrical resistivity
- 2.3.4.1 Metals
- 2.3.4.2 Semiconductors
- 2.3.4.3 Composites
- 2.3.5 Ionic conduction
- 2.3.6 Semiconductors
- 2.3.6.1 Intrinsic semiconductors
- 2.3.6.1.1 Generation of carriers
- 2.3.6.1.2 Recombination of carriers
- 2.3.6.2 Extrinsic semiconductors
- 2.3.6.2.1 Impurity semiconductors
- 2.3.6.2.1.1 n-type semiconductors
- 2.3.6.2.1.2 p-type semiconductors
- 2.3.6.2.2 Defect semiconductors
- 2.3.6.2.2.1 Excess semiconductors
- 2.3.6.2.2.2 Deficit semiconductors
- 2.3.6.2.1 Impurity semiconductors
- 2.3.6.3 The mass-action law
- 2.3.6.4 Majority and minority carriers
- 2.3.6.5 The pn junction
- 2.3.6.1 Intrinsic semiconductors
2.4 Resistive behavior
2.5 Effect of temperature on resistive behavior
2.6 Effect of strain on resistive behavior
2.7 Effect of damage on resistive behavior
2.8 Thermoelectric behavior
2.9 Electromagnetic behavior
2.10 Conclusion
3 Cement-Based Materials for Piezoresistivity (Strain Sensing)
3.1 Introduction
3.2 Effect of fiber type on the piezoresistive behavior
- 3.2.1 Cement paste containing 0.72 vol.% short steel fibers
- 3.2.2 Cement paste containing 0.36 vol.% short steel fibers
- 3.2.3 Cement paste containing 0.5 vol.% short carbon fibers
- 3.2.4 Cement paste containing 0.5 vol.% short carbon filaments
- 3.2.5 Gage factor
- 3.2.6 Electrical resistivity
- 3.2.7 Discussion
3.3 Effect of curing age on the piezoresistive behavior
3.4 Mechanism behind piezoresistivity in short fiber cement-based materials
3.5 Piezoresistivity in continuous fiber cement-based materials
3.6 Piezoresistivity in short fiber cement coating
3.7 DC vs. AC
3.8 Application in weighing in motion
3.9 Conclusion
4 Cement-Based Materials for Damage Sensing
5 Electrically Conductive Cement-Based Materials
6 Cement-Based Materials for Dielectric Functions
7 Cement-Based Materials for Thermal Engineering
8 Cement-Based Materials for Damping
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