[1]
Gorbunov M.N., Stamping parts from tubular blanks, Mashgiz, Moscow, (1960).
Google Scholar
[2]
Mosin F.V., Technology of manufacturing of details from pipes, Mashgiz, Moscow, (1962).
Google Scholar
[3]
Zubtsov M.E., Sheet stamping, Mashinostroenie, Moscow, (1980).
Google Scholar
[4]
Popov E.A., Fundamentals of the theory of sheet punching, Mashinostroenie, Moscow, (1977).
Google Scholar
[5]
Averkiev Y.A., Averkiev A.Y., Cold stamping technology, Mashinostroenie, Moscow, (1989).
Google Scholar
[6]
Perlin I.L., Ermanok M.Z., Metal Forming: Processes and Analysis, McGaw-Hall Inc., New York, (1968).
Google Scholar
[7]
Avitzur, B., Flow forming of the wall of axisymmetric parts from anisotropic tube billets, Machinery Publishing, Moscow, (2009).
Google Scholar
[8]
S.S. Yakovlev, Forging and stamping: reference book. T. 4. Sheet stamping, Mashinostroenie, Moscow, (2010).
Google Scholar
[9]
Shveykin V.V., Slavin V.B., Investigation of forces when pushing a pipe into a drawing, Izv. vuzov. Chernaya metallurgiya, 8 (1963) 72-81.
Google Scholar
[10]
Shveykin V.V., Slavin V.B., Deformation by pushing the pipe into the die, Izv. vuzov. Chernaya metallurgiya, 2 (1964) 86-93.
Google Scholar
[11]
Ermanok M.Z., Gorokhov V.S., Deformation of the pipe when dredging into the die, Progressive processes for the production of pipes, (1966) 37-43.
Google Scholar
[12]
Baranov G.L., Analysis of the stress-strain state when pushing round tubes, Izv. vuzov. Chernaya metallurgiya, 4 (1984) 30-35.
Google Scholar
[13]
Avitsur V., Crimping and distribution of pipes, Engineering and technology of engineering: Proceedings, 1 (1965) 85-93.
Google Scholar
[14]
D.W. Zhao, H.J. Du, G.J. Wang, X.H. Liu, G.D. Wang, An analytical solution for tube sinking by strain rate vector innerproduct integration, Journal of Materials Processing Technology, 209 (2009) 408-415.
DOI: 10.1016/j.jmatprotec.2008.02.011
Google Scholar
[15]
Averkiev Y.A., Investigation of crimping of hollow cylindrical billets, Engineering methods for calculating the technological processes of metal forming, (1957) 167-190.
Google Scholar
[16]
Averkiev Y.A., Analysis of the crimping of hollow cylindrical billets by a conical matrix, Machines and technology of metal forming: a collection of articles. N.E. Bauman, (1955) 21-37.
Google Scholar
[17]
Averkiev Y.A., Determination of the greatest degree of deformation in the compression of hollow cylindrical billets in a conical matrix, Forging and stamping production, 11 (1966) 19-22.
Google Scholar
[18]
Pertsikov Z.I., Ermanok M.Z., Stresses at the boundary of the elastic and plastic zones when pushing and drawing pipes, Non-ferrous metals, 6 (1971) 65-67.
Google Scholar
[19]
Parshin S.V., Udalov A.A., Udalov A.V., Influence of non-contact deformation on stresses during plastic pipe crimping in a conical matrix, Proizvodstvo prokata, 11 (2017) 24-30.
DOI: 10.4028/www.scientific.net/msf.946.812
Google Scholar
[20]
Udalov A.A., Udalov A.V., Method of discontinuous solutions in the educational process of plastic pipe crimping, Proizvodstvo prokata, 2 (2018) 30-36.
Google Scholar
[21]
Bogatov A.A., Mechanical properties and models of the destruction of metals: Textbook. manual for high schools, UGTU-UPI, Ekaterinburg, (2002).
Google Scholar