Get Nanotechnology in Eco-efficient Construction Materials, PDF

Methods Materials

By Fernando Pacheco-Torgal

ISBN-10: 0857095447

ISBN-13: 9780857095442

Advent to nanotechnology in eco-efficient building fabrics. half 1 Infrastructural functions: Nanoscience and nanoengineering of cement-based fabrics; Nanoparticles for high-performance concrete (HPC); Self-sensing concrete with nanomaterials; using nanotechnology to augment the majority and floor homes of metal for structural functions; Nanoclay-modified asphalt combos for eco-efficient development; questions of safety in relation to nanomaterials for building purposes. half 2 purposes for construction power potency: skinny motion pictures and nanostructured coatings for eco-efficient structures; excessive functionality thermal insulation fabrics for structures; Silica nanogel for energy-efficient home windows; Switchable glazing know-how for eco-efficient building; 3rd new release photovoltaic (PV) cells for eco-efficient structures. half three Photocatalytic functions: Concrete, mortar and plaster utilizing titanium dioxide nanoparticles: purposes in toxins keep watch over, self-cleaning and photosterilisation; Self-cleaning tiles and glasses for eco-efficient constructions; Nanotechnology in production paints for eco-efficient constructions; Nanotechnology for household water purification.

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Additional resources for Nanotechnology in Eco-efficient Construction Materials, Processes and Applications.

Sample text

Münch, B. , 2009. A critical examination of nanoindentation on model materials and hardened cement pastes based on virtual experiments. Cement and Concrete Composites, 31(10), 705–714. , Constantinides, G. , 2004. Is concrete a poro-mechanics material? A multi-scale investigation of poro-elastic properties. Materials and Structures, 37(1), 43–58. , Delafargue, A. , 2005. Experimental microporomechanics. In Dormieux, L. -J. (eds), Applied Microporomechanics of Porous Materials, CISM Lecture notes no 580, Springer Wien, New York.

Direct observation of the carbonation process on the surface of calcium hydroxide crystals in hardened cement paste using an atomic force microscope. Journal of Materials Science, 38(9), 1909–1916. , Tyson, B. , 2010. Distribution of carbon nanofibers and nanotubes in cementitious composites. Transportation Research Record, 2142, 89–95. Y. , 2007. Influence of nano-SiO2 addition on properties of hardened cement paste as compared with silica fume. Construction and Building Materials, 21(3), 539–545.

The effects of SiO2 nanoparticles on physical and mechanical properties of high strength compacting concrete. Composites Part B: Engineering, 42(3), 570–578. , Smilauer, V. , 2010. Nanoindentation characteristics of alkali-activated aluminosilicate materials. Cement and Concrete Composites, 33(2), 163–170. , 2004. The structure and stoichiometry of C-S-H. Cement and Concrete Research, 34(8), 1521–1528. C. , 1992. An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments.

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Nanotechnology in Eco-efficient Construction Materials, Processes and Applications. by Fernando Pacheco-Torgal

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