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Modeling of Hypervelocity Interaction of Solids in the Finite Element Complex EFES
by
Radchenko, P. A.
, Batuev, S. P.
, Radchenko, A. V.
in
Algorithms
/ Boundary conditions
/ Computational grids
/ Condensed Matter Physics
/ Finite element analysis
/ Finite element method
/ Hadrons
/ Heavy Ions
/ Hypervelocity
/ Impact velocity
/ Lasers
/ Mathematical and Computational Physics
/ Mathematical models
/ Methods
/ Nuclear Physics
/ Numerical models
/ Optical Devices
/ Optics
/ Photonics
/ Physics
/ Physics and Astronomy
/ Pressure distribution
/ Shock waves
/ Software packages
/ Space debris
/ Theoretical
/ Velocity
/ Yield stress
2023
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Modeling of Hypervelocity Interaction of Solids in the Finite Element Complex EFES
by
Radchenko, P. A.
, Batuev, S. P.
, Radchenko, A. V.
in
Algorithms
/ Boundary conditions
/ Computational grids
/ Condensed Matter Physics
/ Finite element analysis
/ Finite element method
/ Hadrons
/ Heavy Ions
/ Hypervelocity
/ Impact velocity
/ Lasers
/ Mathematical and Computational Physics
/ Mathematical models
/ Methods
/ Nuclear Physics
/ Numerical models
/ Optical Devices
/ Optics
/ Photonics
/ Physics
/ Physics and Astronomy
/ Pressure distribution
/ Shock waves
/ Software packages
/ Space debris
/ Theoretical
/ Velocity
/ Yield stress
2023
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Do you wish to request the book?
Modeling of Hypervelocity Interaction of Solids in the Finite Element Complex EFES
by
Radchenko, P. A.
, Batuev, S. P.
, Radchenko, A. V.
in
Algorithms
/ Boundary conditions
/ Computational grids
/ Condensed Matter Physics
/ Finite element analysis
/ Finite element method
/ Hadrons
/ Heavy Ions
/ Hypervelocity
/ Impact velocity
/ Lasers
/ Mathematical and Computational Physics
/ Mathematical models
/ Methods
/ Nuclear Physics
/ Numerical models
/ Optical Devices
/ Optics
/ Photonics
/ Physics
/ Physics and Astronomy
/ Pressure distribution
/ Shock waves
/ Software packages
/ Space debris
/ Theoretical
/ Velocity
/ Yield stress
2023
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Modeling of Hypervelocity Interaction of Solids in the Finite Element Complex EFES
Journal Article
Modeling of Hypervelocity Interaction of Solids in the Finite Element Complex EFES
2023
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Overview
The interaction of space debris with the protective shield in the impact velocity range of 2 000–7 000 m/s is numerically simulated. The space debris particle is modeled by a steel ball. Numerical modeling is performed by the finite element method implemented in the author’s software package EFES. The proposed fracture algorithm allows describing the fragmentation of the material and the formation of new contact boundaries without distorting the computational mesh. The peculiarities of shock-wave processes and fracture of the screen and particle at different interaction velocities are investigated.
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