[1]
Yu.M. Bazhenov, L.A. Alimov, V.V. Voronin, N.V. Treskova, Design of building materials and units producing factories, ASV, Moscow, (2005).
Google Scholar
[2]
Yu.M. Bazhenov, A.G. Komar, Technology of concrete and reinforced concrete units, Stroyizdat, Moscow, (1984).
Google Scholar
[3]
G.I. Berdichevsky, A.P. Vasil'ev, L.A. Malinina, Precast concrete units production, Stroyizdat, Moscow, (1989).
Google Scholar
[4]
G.S. Konstantopulo, Enginery of reinforced concrete units factories, Stroyizdat, Moscow, (1993).
Google Scholar
[5]
V.A. Bauman, I.I. Bykhovsky, B.G. Gol'denshteyn, Vibrating machines in construction and production of construction materials, Mashinostroenie, Moscow, (1970).
Google Scholar
[6]
R.L. Zenkov, I.I. Ivashkov, L.N. Kolobov, Machines of continuous transport, Mashinostroenie, Moscow, (1987).
Google Scholar
[7]
S.G. Osmanov, A.L. Zholobov, On the issue about the choice of methods and means of feeding of ready-mix concrete on the dense aggregate to the point of placement, Engineering Journal of Don. 1 (2011).
Google Scholar
[8]
S.G. Osmanov, Reserves of efficiency increase and enlargement of inertia conveyors in the process of concrete mix transportation application field, Construction – vital activity medium formation,: mateterials of XVth International scientific-practical conference, Moscow State University of Civil Engineering, Moscow, (2012).
Google Scholar
[9]
I.G. Sovalov, I.A. Shenderovich, The application of vibrating conveyors for very dry concrete mixes transportation, Mechanization of construction. 6 (1966) 25-27.
Google Scholar
[10]
B.A. Lishansky, Research and optimization of concrete mixes vibrotransportation adjusted for their rheological properties process, PhD diss., Kharkov Automobile and Highway Institute, Kharkov, (1978).
Google Scholar
[11]
A.N. Pechenkin, Vibrotransport of concrete, Construction industry. 6 (1938) 26-29.
Google Scholar
[12]
I.G. Sovalov, I.A. Shenderovich, Vibratory movement of low and high workability concrete mixes, Industrial engineering. 6 (1966) 40-43.
Google Scholar
[13]
B.A. Lishansky, N.V. Mikhailov, P.A. Rebinder, Physical-chemical mechanics of concrete – the scientific base of vibratory movement of concrete mixes, Proceedings of the USSR Academy Sciences. 175. 5 (1967) 1101-1104.
Google Scholar
[14]
S.G. Osmanov, The analysis of motion asymmetry parameters of the work member of improved inertia conveyor for concrete mix transportation, Building sector development prospects,: mateterials of VIth International scientific-practical conference, Astrakhan Institute of Civil Engineering, Astrakhan. 2 (2012).
Google Scholar
[15]
S.G. Osmanov, Concrete mix transportation with the help of inertia conveyor with longitudinal asymmetric oscillations of work member, Proceedings of Rostov State University of Civil Engineering. 16 (2012) 142-143.
Google Scholar
[16]
I.F. Goncharevich, Dynamics of vibrating transportation, Nauka, Moscow, (1972).
Google Scholar
[17]
I.F. Goncharevich, On the crest of the wave. The ways of movement in nature and technology, Nauka, Moscow, (1989).
Google Scholar
[18]
A.A. Afanasyev, Pulse compaction concrete mixes technology, Stroyizdat, Moscow, (1987).
Google Scholar
[19]
I.G. Sovalov, I.A. Shenderovich, About the vibrating transport of concrete mixes, Concrete and reinforced concrete. 5 (1967) 19-21.
Google Scholar
[20]
A.K. Baiburin, S.N. Pogorelov, Study of concrete strength heterogeneity in monolithic structures, Magazine of Civil Engineering. 3 (2012) 12-18.
DOI: 10.5862/mce.29.1
Google Scholar