Nanobuild-2-2014-pages-53-70

Posted onCategoriesБез рубрики

Pages:   53-70

Realization of electromechanical and chemical ways for increasing mineral binder’s activity

Authors:  UDERBAYEV Saken Seitkanovich, Doctor of Engineering, Professor, Head of the Department for Life Security and Sustainable Use of Natural Resources, Korkyt Ata Kyzylorda State University (Kazakhstan Republic); Aiteke Bi str., 29А, Kyzylorda, 120014, Republic of Kazakhstan, e-mail: Saken_Uderbayev@mail.ru

Extended Abstract:  The article highlights the problem of obtaining high density and high strength building materials by developing and implementing electromechanical and chemical ways to increase the activity of the mineral binder and thus increase the durability of building materials based on it.

Key words: method of activation, electromechanical and chemical, mill, durability, ash and cement containing stone.

References:

1. Patent RF. RK 7745. Drum elektropolarized mill. K.A. Bisenov, A.A. Akchabaev, S.S. Uderbayev, M.A. Akchabaev. publ. 03.12.2001. Bull. № 12. 3p.

2. Sychev M.M. Tverdenie vjazhushhih veshhestv [Hardening of binders]. Leningrad. SI, Leningrad branch. 1974.

3. Akhverdov I.N. Osnovy fiziki betona [Fundamentals of physics of concrete]. Moscow. Stroiizdat. 1981. 464 p.

4. Akhverdov I.N. Akusticheskaja tehnologija betona [Acoustic concrete technology].. Moscow. SI. 1976. 145 p.

5. Detlaf A.A., Jaworski B.N. Obshhij kurs fiziki [The general course of physics]. Moscow. High School. 2001. 718 p.

6. Akhverdov I.N. Osnovy fiziki betona [Fundamentals of physics of concrete]. Moscow. Stroiizdat. 1981. 464 р.

7. Akhverdov I.N. Akusticheskaja tehnologija betona [Acoustic concrete technology]. Moscow. SI. 1976. 145 р.

8. Akimov A.V., Kryzhanovsky I.I., Barabula F.V. et al. Tehnologija rotacionno–pul’sacionnyh aktivaciizol [Technology rotary pulsation activation angry]. Ecological Problems of secondary resources in building materials and products: Abstracts of All-Union Scientific-practical workshop (October 15–17, 1990.). Chymkent. 1990. B II. P.64–65.

9. Ganin V.P. Jeksperimental’nye issledovanija vlijanija jelektromagnitnogo polja na tverdenie betona [Experimental studies of the influence of electromagnetic field on the hardening of concrete]. Heat treatment of concrete products and structures in the electromagnetic field of the current of industrial frequency. Minsk: ITMO AN BSSR. 1975. P. 103–111.

10. Krylov B.A., Lee A. O vozdejstvii jelektricheskogo toka na tverdenie betonov [On the effect of electric current to the hardening of concrete]. Concrete and reinforced concrete. 1992. № 2. Р 7–9.

11. Strakhov Y.M., Maiboroda T.I., Ryasnyi B.G. Ispol’zovanie iskrovyh razrjadov dlja aktivacii rastvornyh i betonnyh smesej [The use of spark discharges for the activation of mortar and concrete mixes]. Concrete and reinforced concrete. 1993. № 3. Р. 9–11.

12. Shengur G.V. Issledovanie primenenija jelektrogidravlicheskogo jeffekta dlja aktivacii cementa [The study of the use of electro–hydraulic effect for cement activation] Application of electrohydraulic effect in the processes of production: materials rep. meeting in Nikolaev. Kiev: Ukrainian Institute of Scientific and Technical Information Technology-Research. 1970. Vol. III.

13. Deinega Y.F. Formirovanie struktury dispersnyh sistem v jelektricheskih poljah //Trudy tret’ej Nacional’noj konferencii po mehanike i tehnologii kompozicionnyh materialov [Formation of the structure of disperse systems in electric fields]. Proceedings of the Third National Conference on the Mechanics and Technology of Composite Materials. Sophia. 1982. Р. 364–367.

14. Uderbayev S.S. Vlijanie jelektromehanohimicheskoj aktivacii na jenergeticheski aktivnoe sostojanie zoly [Effect of electromechanical and chemical activation on the energy active state of the ash]. Proceedings of the IX International Scientific and Practical Conference «Science and Education –2006». Ukraine, Dnepropetrovsk. 2006. T. 10. P. 92–95.

15. Gusev B.V. The problems of nanomaterials creation and nanotechnologies development in construction industry. Nanotehnologii v stroitel’stve = Nanotechnologies in Construction. 2009, Vol. 1, № 2, pp. 5–10. URL: http // www.nanobuild.ru (date of access: 15.01.2010).

16. Belov V.V. Smirnov M.A. Optimization of the size composition of raw materials to produce extruded mixtures of concrete based on cement-bonded. Nanotehnologii v stroitel’stve = Nanotechnologies in Construction. 2010, Vol. 2, № 2, pp. 7–19. URL: http // www.nanobuild.ru (date of access: 15.01.2010).

17. Uderbayev S.S. Realization of electromechanical and chemical ways for increasing mineral binder’s activity. Nanotehnologii v stroitel’stve = Nanotechnologies in Construction. 2012, Vol. 4, № 2, pp. 38–53. URL: http // www.nanobuild.ru

 

Full text in PDF format (53-70)