[1]
V. V. Belov, A. F. Bur'janov, G. I. Jakovlev, V. B. Petropavlovskaja, H. B. Fisher, I. S. Maeva, T. B. Novichenkova, Modification of structure and properties of construction composites based on calcium sulfate, Мoscow, De Nova, (2012).
Google Scholar
[2]
V. V. Babkov, Modified gypsum with increased water resistance and gypsum expanded-clay concrete wall blocks for low housing construction, third ed. Stroitel'nye materialy, (2012).
Google Scholar
[3]
T. Ju. Safonova, Influence reactive puzzolan on properties of the mixed air binders. Vestnik grazhdanskih inzhenerov, (2012).
Google Scholar
[4]
M. S. Garkavi, Structure formation of nanomodified gypsumpolimer material, third ed. Suhie stroitel'nye smesi. (2013).
Google Scholar
[5]
V. S. Lesovik, N. V. Chernysheva, V. G. Klimenko, Structurization processes of the gipsum-containing components considering raw materials genesis, Izvestija vuzov. Stroitel'stvo, (2012).
Google Scholar
[6]
V. P. Kuz'mina, Way of introduction basalt fiber in composite materials, Nanotekhnologii v stroitel'stve: nauchnyj scientific Internet – journal, (2011).
Google Scholar
[7]
M. S. Garkavi, S. A. Nekrasova, E. A. Troshkina, Kinetics of contacts formation in the nanomodified gypsum materials, Stroitel'nye materialy, (2013).
Google Scholar
[8]
I. S. Maeva, G. I. Jakovlev, Structuring of anhydrite matrix by nanodisperse modifying additives, third ed. ,. Stroitel'nye materialy, (2009).
Google Scholar
[9]
V. K. Kozlova, A. V. Vol'f, Analysis of the reasons of late emergence ettringite in a cement stone. Polzunovskij vestnik. (2009).
Google Scholar
[10]
N. V. Chernysheva, V. S. Lesovik, Quick-hardening composites basen on the waterproof gypsum binders: monograph, Belgorod, (2011).
Google Scholar
[11]
V. B. Petropavlovskaja, A. F. Bur'janov, T. B. Novichenkova, K. S. Petropavlovskii, The self-reinforced gypsum composites, Мoscow, De Nova, (2015).
Google Scholar