Nanotechnological Inventions and Nanomaterials Produce A Profound Effect

Nanotechnological Inventions and Nanomaterials Produce A Profound Effect

Alexeevich, VLASOV Vladimir;
nanotehnologii v stroitelʹstve 2015 Vol. 7 pp. 82-104
218
alexeevich2015nanotechnologicalnanotehnologii

Abstract

The inventions in the area of nanotechnologies and nanomaterials produce a profound effect in construction, housing and communal services and adjacent economic fields as they allow us: to increase mechanical strength, coefficient of elasticity, alkali resistance and temperature of products vitrification; to obtain nanostructured coatings with the property of shape memory on the steel; to raise the dynamics of coal burning and its full burnout in the boilers of thermoelectric power station; to produce metal nanopowders with increased stored energy 10–15% etc. For example, the invention «Epoxy composition for high strength, alkali resistant structures» refers to epoxy composition used as a binder for production of high strength, thermal- and alkali-resistant glass-fiber material which can be applied in the manufacture process of construction reinforcement to strengthen concrete structures. The invention «The method to produce nanostructured reaction foil» can be used to join different materials including metal alloys, ceramics, amorphous materials and elements of microelectronic devices that are sensible to the heating. This process provides decreased labour-output ratio and energy consumption as well as the condition to manufacture foil with specified stored energy and high mechanical properties. The invention «The method of intensification of burning lowreactionary coal in the boilers of thermoelectric power station» refers to the thermal energy and can be implemented at the thermal plants. The increased dynamics of inflaming and burning leads to full burnout of powdered-coal low-reactionary fuel and decreased mechanical underfiring. The specialists may be also interested in the following inventions: fine dispersed organic suspension of carbon metal-containing nanostructures and the method to produce it; the dispersion of carbon nanotubes; the composition for reinforcement of building structures; the reinforced plate element made of natural or conglomerate stone and its multilayer protective coating; the production method for sensible element of gas detectors with carbon nanotubes; the method to strengthen metal products with obtaining nanostructured surface layers; the production method for microballs and microspheres; the method to apply nanodiamond material by means of combined electromechanical treatment; the production method for stable suspensions of metal nanoparticles and stable colloid suspensions, etc.

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