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  1. Journal of Applied Mechanics and Technical Physics
  2. Journal of Applied Mechanics and Technical Physics : Volume 48
  3. Journal of Applied Mechanics and Technical Physics : Volume 48, Issue 4, July 2007
  4. Solution of one problem of fracture mechanics
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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 48, Issue 6, November 2007
Journal of Applied Mechanics and Technical Physics : Volume 48, Issue 5, September 2007
Journal of Applied Mechanics and Technical Physics : Volume 48, Issue 4, July 2007
Convective structures in a thin layer of an evaporating liquid under an airflow
Convective instability of a system of horizontal layers of slightly compressible liquids
Turbulent flow past a transverse cavity with inclined side walls. 2. Heat transfer
Experimental study of the reverse flow in the forward separation region in a pulsating flow around a spiked body
Diffusion stability of bubbles in a cluster
Evolution of long nonlinear waves on the interface of a stratified viscous fluid flow in a channel
Fragmentation of liquid and liquid-plastic media under unsteady strains
Dynamics of a vapor shell around a heated particle in a liquid
Evolution of a vapor cavity during explosive boiling on a film microheater: Experiment and numerical simulation
Modeling the effect of diffusion of the ambient medium on the long-term strength of a hollow cylinder under uniaxial tension
Stability of a rectangular plate under biaxial tension
Design of a transversely layered cantilever of minimum mass under specified maximum-deflection constraint
Crack initiation in a stiffened plate
Solution of one problem of fracture mechanics
Dynamic deformation of a thermoviscoelastic rod of triangular cross section in a coupled formulation
Thermodynamics of finite strain elastic-inelastic deformation
Contribution of point defects to the temperature anomaly of the yield stress in single crystals of the Ni$_{3}$Ge alloy
Structural approach in problems of the limit equilibrium of brittle solids with stress concentrators
Stress-strain state of an anisotropic plate with an elliptic hole and thin rigid inclusions
Journal of Applied Mechanics and Technical Physics : Volume 48, Issue 3, May 2007
Journal of Applied Mechanics and Technical Physics : Volume 48, Issue 2, March 2007
Journal of Applied Mechanics and Technical Physics : Volume 48, Issue 1, January 2007
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 39
Journal of Applied Mechanics and Technical Physics : Volume 38

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Solution of one problem of fracture mechanics

Content Provider Springer Nature Link
Author Gavrilkina, M. V. Glagolev, V. V. Markin, A. A.
Copyright Year 2007
Abstract This paper considers a model for the opening-mode fracture separation process based on the introduction of an interaction layer. This layer is defined as the region of localization of the fracture process. The stress-strain state of the layer material is uniform in the cross section of the layer. A study is made of the deformation of a double-cantilever beam weakened by a notch whose width is equal to the thickness of the interaction layer. The problem is solved in a linearly geometrical approximation. The thickness of the interaction layer is estimated, and a method for solving the formulated problem is proposed.
Starting Page 571
Ending Page 576
Page Count 6
File Format PDF
ISSN 00218944
Journal Journal of Applied Mechanics and Technical Physics
Volume Number 48
Issue Number 4
e-ISSN 15738620
Language English
Publisher Springer US
Publisher Date 2007-01-01
Publisher Place Boston
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword characteristic size ideally elastoplastic model specific work of fracture Mechanics Fluids Mechanics, Fluids, Thermodynamics Applications of Mathematics Mathematical Modeling and Industrial Mathematics Mechanical Engineering
Content Type Text
Resource Type Article
Subject Mechanics of Materials Condensed Matter Physics Mechanical Engineering
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