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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 3, May 2007
  4. Antiplane strain of a body undergoing large-rotations
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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
Journal of Applied Mechanics and Technical Physics : Volume 48, Issue 3, May 2007
Gas-dynamic analogy for vortex free-boundary flows
Equilibrium of a free nonisothermal liquid film
Optimization of the shapes of obstacles in jet-separation flow
Spontaneous swirling in axisymmetric MHD flows of an ideally conducting fluid with closed streamlines
Dynamics and radiation of a single bubble under conditions of abnormal compressibility of a bubbly liquid
Shock waves in water with Freon-12 bubbles and formation of gas hydrates
Laminar-turbulent transition in the boundary layer on cones in a hypersonic flow at high Reynolds numbers per meter
Numerical simulation of receptivity of a hypersonic boundary layer to acoustic disturbances
Mathematical modeling of the motion of a portion of helium under pulsed injection over a fixed bed of cenospheres
Quasi-steady-state flows in a liquid film in a gas: Comparison of two methods of describing waves
On the possibility of reducing the penetration capability of shaped-charge jets in a magnetic field
Numerical simulation of plasma motion in a magnetic field. Two-dimensional case
Compaction of copper nanopowder
Gas-dynamic colliders: Numerical simulations
Mathematical models of environmental forecasting
Deformation model for brittle materials and the structure of failure waves
Modeling the deformation of rock with rough surfaces of block contact under quasistatic and dynamic loading conditions
Reducing three-dimensional elasticity problems to two-dimensional problems by approximating stresses and displacements by legendre polynomials
Antiplane strain of a body undergoing large-rotations
Constructing an analytical solution for lamb waves using the cosserat continuum approach ( Journal of Applied Mechanics and Technical Physics , Volume 48 , Issue 3 )
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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Antiplane strain of a body undergoing large-rotations

Content Provider Springer Nature Link
Author Bondar’, V. D.
Copyright Year 2007
Abstract Antiplane strain of a cylindrical elastic body undergoing large rotations under surface load in the absence of body loads is studied. The form of the elastic potential corresponding to this strain is found. The stresses, the strains, and the displacement are expressed in terms of pressure and two independent strains and the pressure is expressed in terms of the linear strain invariant. For the strains and displacement, nonlinear boundary-value problems are formulated and their ellipticity conditions are given. The linear problem for the displacement is obtained by transformation of variables. An example of determining the displacement is considered.
Starting Page 460
Ending Page 466
Page Count 7
File Format PDF
ISSN 00218944
Journal Journal of Applied Mechanics and Technical Physics
Volume Number 48
Issue Number 3
e-ISSN 15738620
Language English
Publisher Kluwer Academic Publishers-Consultants Bureau
Publisher Date 2007-01-01
Publisher Place New York
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword displacement Almansi strains rotations Cauchy stresses elastic potential nonlinearity boundary-value problem 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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