User:JoKalliauer/gallery
Sun May 12 21:08:16 CEST 2019
editSun May 12 20:56:17 CEST 2019
edit2017-11-04 22:05:00
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Boundary conditions of the quatermodel
Boundary conditions of uniaxial stress -
preliminary analysis, modelling the material as linear elastic NLGEOM=NO
Strech in loading direction: ϵ₁₁,nom=1 -
preliminary analysis, modelling the material as linear elastic NLGEOM=NO
Strech orthongonal to the loading direction: ϵ₂₂,nom=-0.49 -
preliminary analysis, modelling the material as linear elastic NLGEOM=NO
Stresses in loading direction: σ₁₁=3MPa -
preliminary analysis, modelling the material as linear elastic NLGEOM=NO
Displacement in loading direction: u₁ -
preliminary analysis, modelling the material as linear elastic NLGEOM=NO
Displacement orthonogal to the loading direction: u₂ -
preliminary analysis, modelling the material as linear elastic NLGEOM=YES
logaritmic strain in loading direction: ϵ₁₁,log=ln(2)~0.6931 -
preliminary analysis, modelling the material as linear elastic NLGEOM=YES
logaritmic strain orthongolal to the loading direction: ϵ₂₂,log=-0.49*ln(2)~-0.3396 -
preliminary analysis, modelling the material as linear elastic NLGEOM=YES
Stesses in loading direcition (using logaritmic strains): σ₁₁=3*ln(2)~2.070MPa -
preliminary analysis, modelling the material as linear elastic NLGEOM=YES
Displacement in loading direction (using logaritmic strains): u₁ -
preliminary analysis, modelling the material as linear elastic NLGEOM=YES
Displacement orthogonal to the loading direction (using logaritmic strains): u₂ -
Ogden hyperelastic material
Logaritmic strain in loading direction: ϵ₁₁,log~0.6931 -
Ogden hyperelastic material
Logaritmic strain orthogonal to the loading direction: ϵ₂₂,log~-0.2328 -
Ogden hyperelastic material
Logaritmic strain in loading direction: σ₁₁~1.534MPa -
Ogden hyperelastic material
Displacements in loading direction: u₁ -
Ogden hyperelastic material
Displacements orthogonal to the loading direction: u₂ -
Represantiv volume Element under uniaxial stress.
2017-11-05 18:27:43
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