[1]
E.M. Chernyshov, G.S. Slavcheva, Construction Monopor system. Construction materials, equipment, technologies of the XXI century No. 9 (2000) 20-21.
Google Scholar
[2]
E.M. Chernyshov, G.S. Slavcheva, M.V. Novikov, Porous concrete for low-rise heat-efficient residential house structures. Bulletin of the Central Regional Branch of the Russian Academy of Architecture and Construction Sciences No. 11 (2012) 243-251.
Google Scholar
[3]
G.S. Slavcheva, E.M. Chernyshov, M.V. Novikov, Heat-efficient foam concrete of a new generation for low-rise construction. Construction materials No. 7 (2017) 20-24.
Google Scholar
[4]
E.M. Chernyshov, G.S. Slavcheva, E.I. Dyachenko, Normalizing the size of grain inclusions in porous concretes based on modeling and experimental investigation of their structure. Contemporary Problems of Construction Materials Science: The Sixth Academy of Readings of RAASN. Ivanovo (2000) 585-595.
Google Scholar
[5]
E.M. Chernyshov, G.S. Slavcheva, Control of operational deformability and crack resistance of macroporous (cellular) concrete. Part 1. Context of the problem and questions of theory. Construction materials No. 1-2 (2014) 105-112.
Google Scholar
[6]
O.Ya. Berg, A.I. Rozhkov, Study of non-elastic deformations and structural changes of high-strength concrete under prolonged action of compressive loads. Collection of works TsNIIS (Moscow: Transport), vol 70 (1969).
Google Scholar
[7]
O.Ya. Berg, E.N. Scherbakov, For consideration of nonlinear connection of stresses and strains of concrete creep in engineering calculations. News of higher education institutions. Construction and architecture No. 12 (1973) 14-21.
Google Scholar
[8]
M.M. Izrayelit, G.S. Galuzo, Study of the physical process of destruction of high-strength light concrete. Concrete and reinforced concrete No. 3 (1967).
Google Scholar
[9]
K.Z. Galustov, Nonlinear theory of concrete creep and calculation of reinforced concrete structures (Moscow: FM), (2006).
Google Scholar
[10]
A.A. Gvozdev, K.Z. Galustov, A.V. Yashin, About some deviations from the principle of superposition in the theory of concrete creep. Concrete and reinforced concrete No. 8. (1967) 223-227.
Google Scholar
[11]
A.A. Gvozdev, A.V. Yashin, K.V. Petrov, I.K. Belobrov, E.A. Guzeev, Strength, structural changes and deformations of concrete. NIIZHB (Moscow: Stroyizdat) (1978).
Google Scholar
[12]
N.I. Karpenko, General models of reinforced concrete mechanics (Moscow: Stroyizdat) (1996).
Google Scholar
[13]
M.V. Novikov, E.M Chernyshov, G.S. Slavcheva, Mechanical properties of porous cement concrete under uniaxial compression taking into account its creep patterns. Construction materials No. 11 (2016) 26-31.
Google Scholar
[14]
M.V. Novikov, E.E. Prokshits, A.N. Goykalov, Creep and Long-Term Strength of Compression Elements from the Foam Concrete Solid State Phenomena vol 284 (2018) 936-943.
DOI: 10.4028/www.scientific.net/ssp.284.936
Google Scholar
[15]
M.V. Novikov, Force resistance of normal sections of reinforced bending elements of structural porous concrete. Bulletin of Civil Engineers No. of 3 (56) (2016) 60-66.
Google Scholar
[16]
M.V. Novikov, Creep of porous concrete hardened under natural physical and climatic effects. Security of the construction fund of Russia. Challenges and Solutions: Materials of International Academic Readings. Kursk P. (2015) 88-94.
Google Scholar
[17]
M.V. Novikov, N.I. Samorodsky, Influence of previous long-term loading on mechanical properties of porous concrete. Scientific Journal of the Voronezh GASU. High technologies. Ecology No. 1 (2015 ) 106-111.
Google Scholar
[18]
S.V. Aleksandrovsky, Calculation of concrete and reinforced concrete structures for temperature and humidity changes taking into account creep (Moscow: Stroyizdat) (1973).
Google Scholar
[19]
V.M. Bondarenko, N.I. Karpenko, Stress level as a factor of structural changes and rheological strength resistance of concrete. Academia. Architecture and construction No. 4 (2007) 56-60.
Google Scholar
[20]
V.M. Bondarenko, V.I. Kolchunov, Design models of reinforced concrete strength resistance: Monograph (Moscow: ACB) (2004).
Google Scholar
[21]
M.V. Novikov, Creep characteristic and stress relaxation in structural porous concreteKnowledge-intensive technologies and innovations: collection of reports of the Jubilee International Scientific and Practical Conference dedicated to the 60th anniversary of the V.G. Shukhov BSTU. Belgorodsky State Technological University named after V.G. Shukhov Part 2 (2014) 69-77.
Google Scholar
[22]
M.V. Novikov, Design values of resistance of porous concrete to short-term and long-term force impacts. Scientific magazine. Engineering systems and structures No. 3-4(28-29) (2017) 57-63.
Google Scholar
[23]
U.V. Zayetsev, Modeling of deformation and strength of concrete by methods of destruction mechanics (Moscow: Stroyizdat) (1982).
Google Scholar
[24]
M.V. Novikov, E.E. Prokshits, To study reinforced compressed elements from structural porous concrete. Sustainable development of the region: architecture, construction, transport: materials of the 4th International Scientific and Practical Conference of the Institute of Architecture, Construction and Transport of the Tambov State Technical University (2017) 180-184.
Google Scholar