[1]
GOST 9.301-86 Yedinaya sistema zashchity ot korrozii i stareniya. Pokrytiya metallicheskiye i nemetallicheskiye neorganicheskiye. Obshchiye trebovaniya, Unified system of protection against corrosion and aging. Metallic and non-metallic inorganic coatings. General requirements.
Google Scholar
[2]
V.I. Carter, Metallicheskiye protivokorrozionnyye pokrytiya, Metal anti-corrosion coatings, Sudostroyeniye, Shipbuilding, Leningrad,(1980).
Google Scholar
[3]
A.M. Antimonov, A.N. Bacherikov, Yu.V.Ryazantsev, Russian Patent 2245937. (2005).
Google Scholar
[4]
L.D. Landau, E.M. Livshits, Theoretical Physics: Textbook. allowance: For universities. Vol.VI. Gidrodinamika, fifth ed., Fizmatlit, Moscow, (2001).
Google Scholar
[5]
L.G. Loitsyansky, Mekhanika zhidkosti i gaza: uchebnik dlya vuzov, Fluid and gas mechanics: a textbook for universities, seventh ed., Drofa, Moscow, (2003).
Google Scholar
[6]
D.W. Dodge, Fluid Systems, J. Industrial and Engineering Chemistry, 51 (1959) 839-840.
Google Scholar
[7]
I.L. Perlin, M.Z. Ermanok, Teoriya volocheniya, Theory of dragging, Metallurgy, Moscow, (1971).
Google Scholar
[8]
M.V. Storozhev, E.A. Popov, Teoriya obrabotki metallov davleniyem, Theory of metal forming, Textbook for universities, fourth ed., Mashinostroenie, Moscow, (1977).
Google Scholar
[9]
G.E. Arkulis, Joint plastic deformation of different metals, Metallurgy, Moscow, (1964).
Google Scholar
[10]
A.M. Antimonov, A.N. Bacherikov, Yu.V.Ryazantsev, Patent of Russia 2257969. (2005).
Google Scholar
[11]
G.S. Ershov, V.A. Chernyakov, Stroyeniye i svoystva zhidkikh i tverdykh metallov, The structure and properties of liquid and solid metals, Metallurgy, Moscow, (1978).
Google Scholar
[12]
W.L. Wilkinson. Nen'yutonovskiye zhidkosti. Gidromekhanika, peremeshivaniye i teploobmen, Non-Newtonian fluids. Hydromechanics, mixing and heat exchange, Mir, Moscow, (1964).
Google Scholar
[13]
J. Astarit, J. Marrucci, Osnovy gidromekhaniki nen'yutonovskikh zhidkostey, Fundamentals of fluid mechanics of non-Newtonian fluids, Mir, Moscow, (1978).
Google Scholar
[14]
E. V. Podryabinkin, Modeling of Newtonian and Non-Newtonian Fluids in a Cylindrical Gap: dissertation, Candidate of Physical and Mathematical Sciences, Tomsk State University, 2005. http://ams.tsu.ru/TSU/QualificationDep/cosearchers.nsf/C7667C8E07501DA147257C5B00447689/$file/Podryabinkin E.V. Distribution.pdf.
Google Scholar
[15]
A.I. Babichev, Dvizheniye tverdykh tel v uprugo-vyazkoy srede [Motion of solids in an elastic-viscous medium], in: Problemy mekhaniki gornykh porod [Problems of mechanics of rocks]. Science, Alma-Ata, 1966, pp.23-28.
Google Scholar
[16]
M. I. Chepurko, V. Ya. Ostrenko, A. A. Kogadeev, Proizvodstvo bimetallicheskikh trub i prutkov, Production of bimetallic pipes and bars, Metallurgy, Moscow, (1986).
Google Scholar
[17]
A.N. Bacherikov, Yu.V. Ryazantsev, N.S. Vaskov, Antimonov A.M., Russian Patent 2271403. (2006).
Google Scholar
[18]
V.A. Ostafyev, Rotornyye i rotorno-konveyyernyye linii v metalloobrabotke, Rotary and rotary conveyor lines in metalworking, Tekhnika, Kiev, (1988).
Google Scholar
[19]
I.A. Klusov, N.V. Volkov, V.I. Zolotukhin, Avtomaticheskiye rotornyye linii, Automatic rotary lines, Mashinostroenie, Moscow, (1987).
Google Scholar
[20]
Alchagirov B. B., Chochaeva A. M., Temperaturnaya zavisimost' plotnosti zhidkogo olova, Temperature dependence of the density of liquid tin, J. Teplofizika vysokikh temperatur, J. High Temperatures, 38 (2000), 48-52.
DOI: 10.1007/bf02755565
Google Scholar
[21]
M.A. Mikheev, I.M. Mikheeva, Osnovy teploperedachi, Basics of heat transfer, Energy, Moscow, (1973).
Google Scholar