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Smart Nanoconcretes and Cement-Based Materials : Properties, Modelling and Applications / edited by Mohd Shahir Liew, Phuong Nguyen-Tri, Tuan Anh Nguyen, Saeid Kakooei.

Contributor(s): Liew, Mohd Shahir [editor.] | Nguyen-Tri, Phuong [editor.] | Nguyen, Tu�an Anh [editor.] | Kakooei, Saeid [editor.].
Material type: materialTypeLabelBookSeries: Micro & nano technologies: Publisher: Amsterdam, Netherlands ; Cambridge, MA : Elsevier, [2020]Description: 1 online resource (726 pages).Content type: text Media type: computer Carrier type: online resourceISBN: 9780128178553; 0128178558.Subject(s): Concrete | Nanocomposites (Materials) | Smart materials | B�eton | Mat�eriaux nanocomposites | Mat�eriaux intelligents | b�eton | concrete | Concrete | Nanocomposites (Materials) | Smart materialsAdditional physical formats: Print version:: Smart Nanoconcretes and Cement-Based Materials : Properties, Modelling and Applications.DDC classification: 620.136 Online resources: ScienceDirect
Contents:
Part I: Basic Principles; 1. Smart nanoconcretes: An introduction 2. Properties of Concrete in presence of nanomaterials". 3. Nano Size Particle Packing for Smart Nanoconcretes and Cement Based Materials: Theory and Technology 4. Molecular Modeling of Nanoscale Features of Cement Paste and their Correlation to Engineering Mechanical Behavior 5. Mathematical Modelling and Simulation 6. Understanding the role of hydration water and nano C-S-H colloids in concrete 7. Development of NanoCement Concrete by Top-Down and Bottom-up Nanotechnology concept 8. Prospect of Magneto-Electric Active Control for Smart Concrete Structures 9. Environmental Impact of Sustainable Green Concrete -- Part II: Applications; 10. Photocatalytic nanomortars 11. Fire performance of concrete containing nano-fibers and graphite nanoparticles 12. Heat storage in concrete deck with nano- and micro-encapsulated PCM 13. Electrical impedance of carbon nanofiber concrete 14. Use of phase change materials in nanoconcrete for energy savings 15. Use of Nano Technology in the Concrete Pavements 16. Thermochromic cement based-materials 17. Multifunctional Smart Nanoconcretes 18. Radiation protection characteristics of nano-concretes against photon and neutron beams 19. Genetically-enriched microbe-facilitated self-healing nanoconcrete 20. Smart cementitious nano-composites for self sensing of structures 21. Application of Self-Healing Nanoconcretes 22. Cement integrity in CO2 sequestrations sites: An effective nano based approach 23. Bio self-healing nanoconcretes 24. Mortar Containing Ceramic Nanoparticles 25. Enhancement routes of corrosion resistance in the steel reinforced concrete by using nanomaterials 26. Application of Nanosilica in Cement and Concrete 27. Reinforcing Cementitious Composites with Graphene Oxide for Enhanced Mechanical Performance -- Prospects and Challenges 28. Macroscopic CNTs as promising reinforcements for concrete structures 29. Nanoseeds as modifiers of the cement hydration kinetics
Summary: Smart Nanoconcretes and Cement-Based Materials: Properties, Modelling and Applications explores the fundamental concepts and applications of smart nanoconcretes with self-healing, self-cleaning, photocatalytic, antibacterial, piezoelectrical, heating and conducting properties and how they are used in modern high-rise buildings, hydraulic engineering, highways, tunnels and bridges. This book is an important reference source for materials scientists and civil engineers who are looking to enhance the properties of smart nanomaterials to create stronger, more durable concrete.
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Part I: Basic Principles; 1. Smart nanoconcretes: An introduction 2. Properties of Concrete in presence of nanomaterials". 3. Nano Size Particle Packing for Smart Nanoconcretes and Cement Based Materials: Theory and Technology 4. Molecular Modeling of Nanoscale Features of Cement Paste and their Correlation to Engineering Mechanical Behavior 5. Mathematical Modelling and Simulation 6. Understanding the role of hydration water and nano C-S-H colloids in concrete 7. Development of NanoCement Concrete by Top-Down and Bottom-up Nanotechnology concept 8. Prospect of Magneto-Electric Active Control for Smart Concrete Structures 9. Environmental Impact of Sustainable Green Concrete -- Part II: Applications; 10. Photocatalytic nanomortars 11. Fire performance of concrete containing nano-fibers and graphite nanoparticles 12. Heat storage in concrete deck with nano- and micro-encapsulated PCM 13. Electrical impedance of carbon nanofiber concrete 14. Use of phase change materials in nanoconcrete for energy savings 15. Use of Nano Technology in the Concrete Pavements 16. Thermochromic cement based-materials 17. Multifunctional Smart Nanoconcretes 18. Radiation protection characteristics of nano-concretes against photon and neutron beams 19. Genetically-enriched microbe-facilitated self-healing nanoconcrete 20. Smart cementitious nano-composites for self sensing of structures 21. Application of Self-Healing Nanoconcretes 22. Cement integrity in CO2 sequestrations sites: An effective nano based approach 23. Bio self-healing nanoconcretes 24. Mortar Containing Ceramic Nanoparticles 25. Enhancement routes of corrosion resistance in the steel reinforced concrete by using nanomaterials 26. Application of Nanosilica in Cement and Concrete 27. Reinforcing Cementitious Composites with Graphene Oxide for Enhanced Mechanical Performance -- Prospects and Challenges 28. Macroscopic CNTs as promising reinforcements for concrete structures 29. Nanoseeds as modifiers of the cement hydration kinetics

Online resource; title from digital title page (viewed on December 13, 2019).

Smart Nanoconcretes and Cement-Based Materials: Properties, Modelling and Applications explores the fundamental concepts and applications of smart nanoconcretes with self-healing, self-cleaning, photocatalytic, antibacterial, piezoelectrical, heating and conducting properties and how they are used in modern high-rise buildings, hydraulic engineering, highways, tunnels and bridges. This book is an important reference source for materials scientists and civil engineers who are looking to enhance the properties of smart nanomaterials to create stronger, more durable concrete.

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