Nanobuild-2-2015-pages-127-138

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THE REVIEW OF THE RESULTS OF MASTER, PH.D. AND DOCTORATES RESEARCH IN THE AREA OF NANOTECHNOLOGIES, NANOMATERIALS, HOUSING AND COMMUNAL SERVICES AND JOINT ECONOMIC SPHERES

Pages:  127-138

UDC 66.011

An overview of the results of dissertation research in the field of nanotechnology and nanomaterials. Part 2

Author:  KARPOV Alexey Ivanovich, Ph.D. in Engineering, referent, International Academy of Engineering; Gazetny str., 9, bld. 4, 125009, Moscow, Russian Federation, e-mail: info@nanobuild.ru

Extended Abstract: To popularize scientific achievements the main results of Russian and foreign scientists’ research are published in the form of abstract. The research «Aerated concrete of autoclave hardening with the use of nanostructured modifier» has the following results:

  1. The practicability of the use of the additives based on melamine-formaldehyde for plasticization of nanostructured silica modifier was proved. The optimal content of plasticizer is 0,1%.
  2. The compositions of aerated concrete of autoclave hardening for construction and thermal insulation with quality classes D350–D500 and durability classes ВО,75; В2,5–В5 were proposed.
  3. The technology for production of aerated concrete of autoclave hardening which comprises the use of nanostructured modifier.

The specialists may be also interested in the research held by Vindizheva A.S. «Nanocomposite cabel elastrons based on polyvinylchloride and aluminum silicates », Ashrapov A.Kh. «Polymer construction nanocomposites based on polyvinylchloride », Dyatlov A.K. «Fine-grained self-compacting concrete with complex nanocontaining additive», Khuzin A.F. «Cement composites with additives of multilayer carbon nanotubes», Ermolin M.S. «Rectification of nano- and microparticles in rotating spiral columns for the analysis of polydispersed samples», Yukhaeva G.R. «Nanocomposite materials based on polyethylene and graphite nanoplates: synthesis, structure, properties», Shepelev D.S. «Energy exchange and localization of energy in carbon nanotubes», Nelyubova V.V. «Compressed silicate autoclave materials with the use of nanostructured modifier», Mironova A.S. «Nanofilled plaster compositions to increase durability of building facades», Goncharova M.A. «Structure formation and technology of construction and special composites based on little used metallurgy wastes», Maiorova L.A. «Controlled self-organization of azaporphyrins into 2D and 3D-nanostructures in Langmuir layers and Langmuir-Blodgett films».

Key words: nanostructured modifier, nanocomposite cabel elastrons, construction nanocomposites, self-compacting concrete with complex nanocontaining additive, nanocomposite materials, nanofilled plaster compositions.

DOI: dx.doi.org/10.15828/2075-8545-2015-7-2-127-138

References:

  1. Altynnik N.I. Gazobeton avtoklavnogo tverdenija s ispol’zovaniem nanostrukturirovannogo

modifikatora [Aerated concrete of autoclave hardening with the use of nanostructured

modifier]. Abstract of Ph.D. thesis. Electronic library of theses. Available at:

http://dslib.net (date of access:16.03.2015). (In Russian).

  1. Karpov A.I. Results of research in the area of nanotechnologies and nanomaterials. Part 4. Nanotehnologii v stroitel’stve = Nanotechnologies in Construction. 2014, Vol. 6, no. 4, pp. 51–58. Available at: http://nanobuild.ru/en_EN/ (date of access: 16.03.2015) (In Russian).
  2. Karpov A.I. Results of research in the area of nanotechnologies and nanomaterials. Part 5.

Nanotehnologii v stroitel’stve = Nanotechnologies in Construction. 2014, Vol. 6, no. 5,

  1. 68–85. DOI: dx.doi.org/10.15828/2075-8545-2014-6-5-68-85. (In Russian).
  2. Diatlov A.K. Melkozernistyj samouplotnjajushhijsja beton s kompleksnoj nanosoderzhashhej

dobavkoj [Fine-grained self-compacting concrete with complex nanocontaining

additive]. Abstract of Ph.D. thesis. Electronic library of theses. Available at: http://

dslib.net (date of access:16.03.2015). (In Russian).

  1. Karpov A.I. Results of research in the area of nanotechnologies and nanomaterials. Part 6.

Nanotehnologii v stroitel’stve = Nanotechnologies in Construction. 2014, Vol. 6, no. 6,

  1. 80–95. DOI: dx.doi.org/10.15828/2075-8545-2014-6-6-80-95 (In Russian). (In Russian).
  2. Ermolin M.S. Frakcionirovanie nano- i mikrochastic vo vrashhajushhihsja spiral’nyh

kolonkah pri analize polidispersnyh obrazcov [Rectification of nano- and microparticles

in rotating spiral columns for the analysis of polydispersed samples]. Abstract of Ph.D. thesis. Electronic library of theses. Available at: http://dslib.net (date of access: 16.03.2015). (In Russian).

  1. Yukhaeva G.R. Nanokompozicionnye materialy na osnove polijetilena i nanoplastin grafita:

sintez, struktura, svojstva [Nanocomposite materials based on polyethylene and graphite

nanoplates: synthesis, structure, properties]. Abstract of Ph.D. thesis. Electronic library

of theses. Available at: http://dslib.net (date of access: 16.03.2015). (In Russian).

  1. Shepelev D.S. Jenergoobmen i lokalizacija jenergii v uglerodnyh nanotrubkah [Energy

exchange and localization of energy in carbon nanotubes]. Abstract of Ph.D. thesis. Electronic

library of theses. Available at: http://dslib.net (date of access: 16.03.2015). (In Russian).

  1. Nelyubova V.V. Pressovannye silikatnye avtoklavnye materialy s ispol’zovaniem

nanostrukturirovannogo modifikatora [Compressed silicate autoclave materials with the

use of nanostructured modifier]. Abstract of Ph.D. thesis. Electronic library of theses.

Available at: http://dslib.net (date of access: 16.03.2015). (In Russian).

  1. Mironova A.S. Nanonapolnennye shtukaturnye kompozicii dlja povyshenija dolgovechnosti

fasadov zdanij [Nanofilled plaster compositions to increase durability of building

facades]. Abstract of Ph.D. thesis. Electronic library of theses. Available at: http://dslib.

net (date of access: 16.03.2015). (In Russian).

  1. Karpov A.I. Development of nanotechnologies in construction – a task which is of great

importance for scientists. Nanotehnologii v stroitel’stve = Nanotechnologies in Construction.

2013, Vol. 5, no. 5, pp. 40–48. URL: http://nanobuild.ru/en_EN/ (date of access:

16.03.2015). (In Russian).

  1. Maiorova L.A. Upravljaemaja samoorganizacija azaporfirinov v 2d- i 3d-nanostruktury

v lengmjurovskih slojah i plenkah Lengmjura-Blodzhett [Controlled self-organization of

azaporphyrins into 2D and 3D-nanostructures in Langmuir layers and Langmuir- Blodgett

films]. Abstract of Ph.D. thesis. Electronic library of theses. Available at: http://dslib.

net (date of access: 16.03.2015). (In Russian).

  1. Gusev B.V. Development of nanotechnologies – the most important technological direction

in construction. Nanotechnologies Nanotehnologii v stroitel’stve = Nanotechnologies in

Construction. 2011, Vol. 3, no. 2, pp. 6–20. Available at: http://nanobuild.ru/ru_RU

(Accessed: 16.03.2015).

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