Nanotechnology in Civil Infrastructure

A Paradigm Shift

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Bibliografische Daten
ISBN/EAN: 9783642166563
Sprache: Englisch
Umfang: viii, 273 S.
Auflage: 1. Auflage 2011
Einband: gebundenes Buch

Beschreibung

InhaltsangabeMultifunctional and Smart Carbon Nanotube Reinforced Cement-based Materials.-Applications of Nanotechnology in Road Pavement Engineering.- Application of Nanoscience Modeling to Understand the Atomic Structure of C-S-H.- The Effect of SWCNT and Other Nanomaterials on Cement Hydration and Reinforcement .- Nanomaterials-enabled Multifunctional Concrete and Structures.- Nano-Optimized Construction Materials by Nano-Seeding and Crystallization Control.- Next-Generation Nano-based Concrete Construction Products: A Review.- Optimization of Clay Addition for the Enhancement of Pozzolanic Reaction in Nano-modified Cement Paste.- Characterization of Asphalt Materials for Moisture Damage Using Atomic Force Microscopy and Nanoindentation.- Nanoclay-modified Asphalt Binder Systems Optimization of Clay Addition for the Enhancement of Pozzolanic Reaction in Nano-modified Cement Paste.- Characterization of Asphalt Materials for Moisture Damage Using Atomic Force Microscopy and Nanoindentation.- Nanoclay-modified Asphalt Binder Systems

Inhalt

Multifunctional and Smart Carbon Nanotube Reinforced Cement-based Materials .- Applications of Nanotechnology in Road Pavement Engineering .-   Application of Nanoscience Modeling to Understand the Atomic Structure of C-S-H .-   The Effect of SWCNT and Other Nanomaterials on Cement Hydration and Reinforcement  .-   Nanomaterials-enabled Multifunctional Concrete and Structures .-   Nano-Optimized Construction Materials by Nano-Seeding and Crystallization Control .-   Next-Generation Nano-based Concrete Construction Products: A Review .-  Optimization of Clay Addition for the Enhancement of Pozzolanic Reaction in Nano-modified Cement Paste .-   Characterization of Asphalt Materials for Moisture Damage Using Atomic Force Microscopy and Nanoindentation .-   Nanoclay-modified Asphalt Binder Systems   Optimization of Clay Addition for the Enhancement of Pozzolanic Reaction in Nano-modified Cement Paste .-   Characterization of Asphalt Materials for Moisture Damage Using Atomic Force Microscopy and Nanoindentation .-   Nanoclay-modified Asphalt Binder Systems