Aguiar / Czarnecki | Polymers in Concrete | Sonstiges | 978-3-908452-88-1 | sack.de

Sonstiges, Englisch, 222 Seiten, Format (B × H): 125 mm x 142 mm, Gewicht: 200 g

Aguiar / Czarnecki

Polymers in Concrete


Erscheinungsjahr 2011
ISBN: 978-3-908452-88-1
Verlag: Trans Tech Publications

Sonstiges, Englisch, 222 Seiten, Format (B × H): 125 mm x 142 mm, Gewicht: 200 g

ISBN: 978-3-908452-88-1
Verlag: Trans Tech Publications


Volume is indexed by Thomson Reuters BCI (WoS).
The field of ?polymers in concrete? is rather well consolidated within the construction industry, and its future will be one of benefiting fully from the synergy between the organic and mineral materials. Concrete-polymer composites (C-PC) exhibit excellent adhesion strength and durability in aggressive environments and the good performance of these materials makes innovative applications possible; including new technologies for restoring and renovating buildings.
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Weitere Infos & Material


Concrete-Polymer Composites ? The Past, Present and FutureSeven Well Known Fundamental Flaws against Innovations in Construction ChemistryMicrostructural Analysis of Paste and Interfacial Transition Zone in Cement Mortars Modified with Water-Soluble PolymersShrinkage Properties of Polymer-Modified Cement Mortars (PCM)The Effect of Latex and Chitosan Biopolymer on Concrete Properties and PerformanceEvaluation of the Hydration of Portland Cement Modified with Polyvinyl Alcohol and Nano ClayHydration of Cement in the Presence of SBR Dispersion and PowderEffect of Epoxy Resin Addition on the Moisture Sensitivity of Macro Defect Free Polymer-Cement CompositesCharacterization of Poly(vinyl Alcohol) Fiber Reinforced Organic Aggregate Cementitious MaterialsEffect of Types and Contents of Polymer Resin on Spalling Prevention of High-Strength Concrete Subjected to FireInfluence of Environmental Temperatures on the Performance of Polymeric Stabilising Agent in Fresh Cementitious MaterialsChemical Shrinkage of Pastes Made with Shrinkage Reducing AdmixturesMechanical Behaviour and Thermal Conductivity of Mortars with Waste Plastic ParticlesRealization of TRC Fa?ades with Impregnated AR-Glass TextilesDevelopment of an Ultra-Lightweight Thin Film Polymer Modified Concrete MaterialPolymer-Modified Mortars for Surface Treatment with the Utilization of Waste PolystyrenePolymer-Modified Mortars for Corrosion Protection at Offshore Wind Energy ConvertersMicrostructural Analysis during the Hydration of Cement-in-Polymer CoatingsInnovative Coating Technology for Textile Reinforcements of Concrete ApplicationsAdvanced Coatings to Improve the Durability in Continuous Glass-Fibre Reinforced ConcreteEffect of Concrete Hydrophobation against Chloride PenetrationOptimization of Polymer-Cement Coating Composition Using Material ModelNucleation on Polymer Nanofibers and their Controllable Conversion to Protective Layers: Preliminary Theoretical StudyAdvanced Seismic Countermeasures for Concrete Bridges by Using Polymer in JapanComposition of Concrete Surfaces after Demoulding and Coating: Comparative Study by XPS, FTIR and Raman SpectroscopiesTests of Flexible Polymer Joints Repairing of Concrete Pavements and of Polymer Modified Concretes Influenced by High Deformations


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