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  1. Journal of Applied Mechanics and Technical Physics
  2. Journal of Applied Mechanics and Technical Physics : Volume 40
  3. Journal of Applied Mechanics and Technical Physics : Volume 40, Issue 3, May 1999
  4. Front structure of a weak shock wave in dense composites
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Journal of Applied Mechanics and Technical Physics : Volume 58
Journal of Applied Mechanics and Technical Physics : Volume 57
Journal of Applied Mechanics and Technical Physics : Volume 56
Journal of Applied Mechanics and Technical Physics : Volume 55
Journal of Applied Mechanics and Technical Physics : Volume 54
Journal of Applied Mechanics and Technical Physics : Volume 53
Journal of Applied Mechanics and Technical Physics : Volume 52
Journal of Applied Mechanics and Technical Physics : Volume 51
Journal of Applied Mechanics and Technical Physics : Volume 50
Journal of Applied Mechanics and Technical Physics : Volume 49
Journal of Applied Mechanics and Technical Physics : Volume 48
Journal of Applied Mechanics and Technical Physics : Volume 47
Journal of Applied Mechanics and Technical Physics : Volume 46
Journal of Applied Mechanics and Technical Physics : Volume 45
Journal of Applied Mechanics and Technical Physics : Volume 44
Journal of Applied Mechanics and Technical Physics : Volume 43
Journal of Applied Mechanics and Technical Physics : Volume 42
Journal of Applied Mechanics and Technical Physics : Volume 41
Journal of Applied Mechanics and Technical Physics : Volume 40
Journal of Applied Mechanics and Technical Physics : Volume 40, Issue 6, November 1999
Journal of Applied Mechanics and Technical Physics : Volume 40, Issue 5, September 1999
Journal of Applied Mechanics and Technical Physics : Volume 40, Issue 4, July 1999
Journal of Applied Mechanics and Technical Physics : Volume 40, Issue 3, May 1999
Self-similar solutions of thermal two-phase filtration
Barothermic effect in filtration of anomalous oil and water
Filtration convection in a high-frequency vibration field
Stabilization of solutions of the nonlinear equation of filtration of a two-phase liquid
Unsteady nonlinear problem of the horizontal motion of a contour under the interface between two liquids
Correlation between theoretical and experimental solitary waves
Thermodynamic instability of disperse media isolated from external actions
Gravity-induced spreading of a drop of a viscous fluid over a surface
Shallow waves in a two-layer vortex fluid under a lid
Axial jet in a potentially rotating fluid in a pipe of variable radius
Stability of a laminar rivulet liquid flow in a cylindrical duct in the approximation of one-dimensional waves
Effect of molecular rotations on acoustic properties of a two-fluid medium
Absolute and convective instability of a supersonic boundary layer
Self-excited oscillations in rarefied, impact supersonic jets
Propagation of disturbances in three-dimensional supersonic boundary layers
One-dimensional motion of an emulsion with solidification
Bifurcation of self-similar solutions describing a thermocapillary flow of a fluid in a thin layer
Heat transfer in intumescent heat- and fire-insulating coatings
Plane linear problem of the immersion of an elastic plate in an ideal incompressible fluid
Front structure of a weak shock wave in dense composites
Averaging of an orthotropic elastic plate weakened by periodic hinges of finite stiffness
Conditions of bubble formation in the intergranular layer of a glass phase in ceramics sintering
Study of the microstructure of a composite after dynamic fracture
Prediction of the effective elastic properties of spheroplastics by the generalized self-consistent method
Adequacy of the description of the process of fracture in computer simulations
Gas-dynamic method of decreasing the force of penetration of a solid into ground
An approximation of the form of a compressed flexible rod
A method of determining the piezoelectric modulus of a nonuniformly polarized rod
Use of physical methods and electron microscopy in analyzing structural changes in Ni$_{3}$Fe alloy
Comments on the publication “compatibility conditions of small deformations and stress functions”
Journal of Applied Mechanics and Technical Physics : Volume 40, Issue 2, March 1999
Journal of Applied Mechanics and Technical Physics : Volume 40, Issue 1, January 1999
Journal of Applied Mechanics and Technical Physics : Volume 39
Journal of Applied Mechanics and Technical Physics : Volume 38

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Front structure of a weak shock wave in dense composites

Content Provider Springer Nature Link
Author Gafarov, B. R. Utkin, A. V. Razorev, S. V. Bogach, A. A. Yushkov, E. S.
Copyright Year 1999
Abstract The structure of the compression-pulse front in a heterogeneous energy material with a characteirstic size of granules of 100–300 μm and its inert simulator with a particle size of 3–5 mm is studied experimentally. Shock waves with an amplitude of the order of 0.1GPa were initiated by a 20-g explosive charge. The velocity of the free surface of the samples or the velocity on the boundary with a water window was recorded by a VISAR laser interferometer. It is shown that the variation in the mass rate in an energy material is of oscillating character, which is explained by the heterogeneous structure of the samples. Oscillations were not observed in a finely dispersed simulator. In addition, it is shown that the viscoelastic Maxwell model is suitable for averaging the description of the evolution of the compression pulse in the studied materials.
Starting Page 501
Ending Page 506
Page Count 6
File Format PDF
ISSN 00218944
Journal Journal of Applied Mechanics and Technical Physics
Volume Number 40
Issue Number 3
e-ISSN 15738620
Language English
Publisher Kluwer Academic Publishers-Plenum Publishers
Publisher Date 1999-01-01
Publisher Place New York
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Applications of Mathematics Mathematical Modeling and Industrial Mathematics Mechanics, Fluids, Thermodynamics Mechanics Fluids Mechanical Engineering
Content Type Text
Resource Type Article
Subject Mechanics of Materials Condensed Matter Physics Mechanical Engineering
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