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Publications in Math-Net.Ru
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Elastoplastic models to describe experimental data on the spallation fracture under impact of plates
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2015, no. 6, 29–36
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Elastoplastic problems in the uniaxially strained state approximation. Analytical and numerical solutions
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2014, no. 2, 37–45
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On numerical modeling of dynamics of irreversible deforming and fracture of oil-bearing layer
Matem. Mod., 25:3 (2013), 62–74
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Modelling of fragmentation of thin-shelled constructions and compact elements under explosive loading and impact interaction
Matem. Mod., 24:2 (2012), 33–66
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Unsteady expansion of thick-wall spherical and cylindrical viscoplastic shells
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2012, no. 6, 20–25
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A study on the fragmentation of space debris particles at high-speed collision
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2009, no. 2, 26–35
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Mathematical modelling of motion of two-lane traffic flow by light signal
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2006, no. 4, 35–40
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Numerical modelling of dynamical strain and fracture of a thick-walled cylindrical shell
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2005, no. 2, 33–37
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Numerical modelling of dynamical strain and fracture of a thick-wall spherical shell
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2004, no. 5, 53–58
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Numerical simulation of dynamic propagation of curvilinear
cracks of hydraulic fracturing
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2004, no. 1, 36–41
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High-speed collisions of space debris particles with gas-filled shells
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2003, no. 1, 54–66
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Mathematical modeling of space debris evolution in near-earth orbits
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2002, no. 4, 33–41
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A model of fragmentation of space debris particles at high-speed collision
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2001, no. 3, 50–55
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Dynamic processes of irreversible deforming and fracture of solids
Matem. Mod., 12:6 (2000), 115–120
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Mathematical modeling of automobile traffic on highways
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2000, no. 4, 39–44
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Mathematical modeling of explosive destruction of spherical shells with formation of two populations of fragments
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1999, no. 2, 41–48
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Mathematical modeling of dynamical deformation and combined microfracture of a thermoelastoviscoplastic medium
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1998, no. 6, 32–40
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Numerical modeling of deformation and destruction of a thin-walled spherical shell (made of laminated viscoelastic composite and filled with fluid) under action of explosion at the center of the shell
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1997, no. 5, 41–48
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Mathematical modelling of thin-walled spherical shell fragmentation under dynamical internal pressure
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1996, no. 3, 52–60
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Simple mathematical models of the explosive failure of a spacecraft
Prikl. Mekh. Tekh. Fiz., 36:2 (1995), 159–165
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On boundary conditions for centrally and axially symmetric problems of mechanics of a deformable rigid body
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1995, no. 6, 105–107
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On the numerical integration of equations of the flow of a hardening elastoplastic medium
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1995, no. 4, 71–74
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Numerical investigation of dynamic processes
of thermoelastic plastic medium deformation and microfracture
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1994, no. 1, 69–77
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On investigation of flat nonsteady elastoplastic flow between parallel plates
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1993, no. 5, 70–73
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The simplest mathematical model of spacecraft failure in explosion
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1993, no. 4, 49–53
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Mathematical model of the deformation and fracture of solid fuel in shock loading
Prikl. Mekh. Tekh. Fiz., 33:6 (1992), 126–134
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A method for constructing calculation networks in two-dimensional regions with separation of interior contact interfaces
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1992, no. 3, 35–42
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Numerical investigation of micropores in thermo-elastic-viscoplastic material
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1992, no. 1, 78–83
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Deformation and failure under impact loading. Model of a thermoelastoplastic medium
Prikl. Mekh. Tekh. Fiz., 31:5 (1990), 116–123
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Numerical chop-off investigation in plate under explosion of planted explosive charge
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1990, no. 5, 54–58
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On criterions of dynamical rupture of thermo-elastic plastic medium which is being damaged
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1990, no. 4, 38–44
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On Lagrangian coordinates calculation for three dimensional problem of high velocity impact of plasto-elastic bar with rigid target
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1988, no. 2, 30–36
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The criterion of dynamic failure in impact interaction of elastoplastic bodies
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1986, no. 6, 46–51
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Numerical investigation of impact of elastic-plastic solids against a rigid barrier in the three-dimensional case
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1985, no. 4, 51–56
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Numerical simulation of complex interaction between a shell of revolution and its filler, with allowance for friction
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1984, no. 2, 85–89
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Numerical simulation of complex interaction between an elastic-plastic shell of revolution and an elastic filler
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 1982, no. 1, 63–68
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Artur Yakovlevich Sagomonyan centenary (1914–2001)
Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2014, no. 6, 69–70
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Thirteenth scientific and technical conference of the all-union research institute of the technology of electric machinery and equipment manufacture
TVT, 8:6 (1970), 1328–1329
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