Eco-efficient Repair and Rehabilitation of Concrete Infrastructures

Forfatter: info mangler
Bog
  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Eco-efficient Repair and Rehabilitation of Concrete Infrastructures provides an updated state-of-the-art review on eco-efficient repair and rehabilitation of concrete infrastructure. The first section focuses on deterioration assessment methods, and includes chapters on stress wave assessment, ground-penetrating radar, monitoring of corrosion, SHM using acoustic emission and optical fiber sensors. Other sections discuss the development and application of several new innovative repair and rehabilitation materials, including geopolymer concrete, sulfoaluminate cement-based concrete, engineered cementitious composites (ECC) based concrete, bacteria-based concrete, concrete with encapsulated polyurethane, and concrete with super absorbent polymer (SAPs), amongst other topics. Final sections focus on crucial design aspects, such as quality control, including lifecycle and cost analysis with several related case studies on repair and rehabilitation. The book will be an essential reference resource for materials scientists, civil and structural engineers, architects, structural designers and contractors working in the construction industry.

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Detaljer
  • SprogEngelsk
  • Sidetal632
  • Udgivelsesdato15-11-2017
  • ISBN139780081021811
  • Forlag Woodhead Publishing Ltd
  • FormatPaperback
Størrelse og vægt
  • Vægt690 g
  • coffee cup img
    10 cm
    book img
    15,2 cm
    22,9 cm

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    Performance NDE Aging Adaptation Coatings Hydration Inspection Concrete Frost resistance Bacteria Cracking Cost-Benefit Analysis Mechanical properties Bond Corrosion Maintenance Acoustic emission Capsules Climate change Ductility Fly ash Concrete bridges Hydrogels Calcium sulfate Concrete structures Alkalinity CO2-Emission Modulus of elasticity LCC Load testing Carbonate Eco-efficiency Durability Composite Long-term performance Literature Studies Damage Identification Pitting Concrete Durability Alkali-activated Materials Mechanical Model Inverse problems Accelerated testing Polyurethane Internal curing Inhibitor Material degradation Life-cycle assessment Mortar FTIR Corrosion Monitoring Construction sector Carbonation Chloride Geopolymers Metakaolin FRP Environmental footprint Environmentally friendly products Accelerating procedures Bacterial exo-product Carbon fibers reinforced polymers concrete repair Concrete Tunnel Concrete infrastructures chlorides Bioadmixture Concrete deterioration Deterioration assessment Electrochemical Realkalisation Electrochemical Measurements Deteriorations Chloride sensor Distributed optical fiber sensors FE model updating Embedded sensor Cold-cured epoxy matrix/adhesive Engineered cementitious composites (ECCs) CO2 emission reductions Concrete Pavement Finite Element (FE) method Crack sealing/healing Increasing fatigue loading Dimensional stability Intensity analysis Electrochemical chloride extraction Environmental scenario ettringite Low reactive clay Field assessment FRP for concrete structures Lumped circuits Mineral additions Modal identification Natural environment lifecycle assessment Lifecycle cost analysis Mechanical performance PH sensor

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