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Research and Development of Modified Building Materials

Research and Development of Modified Building Materials

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This reprint includes research papers on different disciplines related to composites. It contains research related to new topics such as nanotubes, fibres, admixtures added in cement and concrete. Additionally self-healing and self-sensing issues are presented. Environmental, and thermal-related topics are also discussed. Studies related to consolidation topics and alkali activation of clays are included. This blend of traditional and modern building materials, all having a common ground, the use of new technologies for improving fresh and harden state properties, make this volume interesting.

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Keywords

  • activating solutions
  • activation energy
  • additives
  • amorphous poly alpha olefin
  • application properties
  • autogenous shrinkage
  • bond performance
  • bulk density
  • cellulose ether
  • Cement
  • cement pastes
  • cement-based materials
  • clay mortars
  • CO2 emission
  • composite modified asphalt binder
  • compressive strength
  • Concrete
  • concrete durability
  • concrete properties
  • curing regime
  • detached decorative plasters
  • digital image correlation
  • durability
  • electrical conductivity
  • electrical resistivity
  • experimental verification
  • fiber spacing
  • filler effect
  • flexural strength
  • foamed geopolymer
  • freeze–thaw cycles
  • glass fiber composites
  • glass microspheres
  • granulated blast furnace slag
  • graphite
  • gypsum binder
  • HEMC
  • high calcium fly ash
  • high-performance fiber reinforced concrete
  • hook-end steel fiber
  • hydrated lime
  • hydration
  • inclination angle
  • injection grout
  • ladle furnace slag
  • light-materials
  • limestone
  • limestone filler
  • mass of specimens
  • Microstructure
  • mix proportion design
  • mortar
  • multi-walled carbon nanotubes
  • nano-calcium oxide
  • nano-silica
  • optimization
  • packing density
  • Paste
  • plaster
  • polyphosphoric acid
  • porosity
  • pullout load-slip curve
  • pullout test
  • reduced density
  • reinforcing lightweight concrete
  • rheological properties
  • self-compacting concrete (SCC)
  • Self-healing
  • self-sensing
  • setting process
  • siliceous fly ash
  • single wall carbon nanotubes
  • Stability
  • steel fibers
  • storage stability
  • strength
  • structural properties
  • superabsorbent polymer
  • supplementary cementitious materials
  • surfactant
  • tensile behavior
  • ternary cements
  • the grey relational analysis
  • thermal insulation
  • Thermal properties
  • TritonX-100
  • ultrasonic technique
  • viscosity
  • water retention
  • wetting–drying

Links

DOI: 10.3390/books978-3-0365-6743-3

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