[1]
V.I. Loganina, V.I. Zhernovsky, M.A. Sadovnikova, K.V. Zhegera, The addition of aluminosilicate-based cement systems, Eastern European Journal of advanced technologies. 5(2013) 68-11.
Google Scholar
[2]
V.I. Loganina, N.A. Petukhova, V.N. Gorbunov, T.N. Dmitrieva, Prospects for the manufacture of organo-mineral supplements on the basis of domestic raw materials, Proceedings of the higher educational institutions, Building. (2009) 936-39.
Google Scholar
[3]
А. Jenni, М. Holzer, М. Zurbriggen, М. Herwegh, Influence of polymers on microstructure and adhesive strength of cementitious tile adhesive mortars, Cement and Concrete Research. 35/1(2005) 35-50.
DOI: 10.1016/j.cemconres.2004.06.039
Google Scholar
[4]
U. Stark, M. Reinold, A. Muller, Neue Methoden zur Messung der Korngrobe und Kornform von Mikro bis Marko, Weimar. (2003) 11369 -1380.
Google Scholar
[5]
M. Taramasso, G. Perego, В. Notari, Proceedings of the 5th International Conference on Zeolites (Ed.L.V.C. Rees), Heyden, London. (1980) 2, 40.
Google Scholar
[6]
Y.V. Mirsky, M.G. Mitrofanov, A.Z. Dorogochinskiy, New adsorbents - molecular sieves, Grozny: Chechen-Ingush. (1964) 385.
Google Scholar
[7]
Y.M. Doroshenko, J.I. Shanah, Рrocesses of structure and properties of cement stone with polymeric modifiers, 15 Szilikatip. esszilikattund. konf.: SILICONF R.l., Budapest. (1989) 273-276.
Google Scholar
[8]
F. Yiqing, C. Lianzhang, Effect of aqueous boric acid (H3B03) treatment on catalytic performance of HZSM-5 zeolite catalysts, Shiyou Jiagong, 7/2(1991) 44.
Google Scholar
[9]
V.I. Loganina, K.V. Zhegera, Evaluating the effectiveness of the use of synthetic aluminum silicates in cement systems, Academic Gazette UralNIIproekt RAASN. (2014) 384-87.
Google Scholar
[10]
V.I. Loganina, M.V. Ariskin, O.V. Karpova, K.V. Zhegera, Evaluation of crack resistance of the finishing layer based on adhesive dry mixture with synthetic aluminum silicates, Building materials. (2015) 1086.
Google Scholar
[11]
V.I. Loganina, L.V. Makarova, R.V. Tarasov, M.A. Sadovnikova, Composition limy binder with the use of the synthesized alumiosilicates for dty construction blends, Advanced Materials Research. 977(2014) 34-37.
DOI: 10.4028/www.scientific.net/amr.977.34
Google Scholar
[12]
V.I. Loganina, L.V. Makarova, R.V. Tarasov, A.D. Ryzhov, The limy composite binder with the use of the synthesized alumosilicates, Applied Mechanics and Materials. 662(2014) 11-14.
DOI: 10.4028/www.scientific.net/amm.662.11
Google Scholar
[13]
V.I. Loganina, A.D. Ryzhov, Structure and properties of synthesized additive based onamorphous aluminosilicates, Case Studies in Construction Materials 3(2015) 132-136.
DOI: 10.1016/j.cscm.2015.10.005
Google Scholar
[14]
V.I. Loganina, K.V. Zhegera, Formation of strength of cement composition in the presence of synthesized aluminosilicates Bulletin of the South Ural State University. Series Construction and architecture.,. Т.15(№2) (2015) 43 - 46.
Google Scholar
[15]
V.I. Loganina, K.V. Zhegera, The effectiveness of use of the composite binder as a dry mix, Case Studies in Construction Materials. №3 (2015) 137–140.
Google Scholar
[16]
V.I. Kalashnikov, V.Yu. Nesterov, V.L. Khvastunov, and others., Glinoslag building materials // Penza: PGAASA. (2000) 207.
Google Scholar