The influence of layer thickness on the stress intensity factor of a penny-shaped crack in a sandwiched viscoelastic bimaterial
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Publication:534127
DOI10.1016/j.ijengsci.2004.08.012zbMath1211.74196OpenAlexW2001022685WikidataQ60171487 ScholiaQ60171487MaRDI QIDQ534127
Publication date: 17 May 2011
Published in: International Journal of Engineering Science (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.ijengsci.2004.08.012
Anelastic fracture and damage (74R20) Composite and mixture properties (74E30) Linear constitutive equations for materials with memory (74D05)
Related Items (6)
An analytical approach for the mixed-mode crack in linear viscoelastic media ⋮ The stress analysis of thin contact layers: a singular perturbation method for integral equations ⋮ A theoretical modelling of strengthening mechanism in graphene-metal nanolayered composites ⋮ Viscoelastic fracture of multiple cracks in functionally graded materials ⋮ Fixed-point iterative algorithm for the linear Fredholm-Volterra integro-differential equation ⋮ Approximate structures of thermoelastic fields induced by a penny-shaped thermal-medium crack in a transversely isotropic layer
Cites Work
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- The influence of layer thickness on the stress intensity factor of a crack lying in an elastic (viscoelastic) layer embedded in a different elastic (viscoelastic) medium (mode III analysis)
- The axisymmetric problem of a disc in a bimaterial sandwich -- the (history dependent) scalar potential case
- STRESS SINGULARITIES IN VISCOELASTIC MEDIA
- The influence of layer thickness on the stress intensity factor of a crack lying in an (visco)elastic layer embedded in a different (visco)elastic medium (Plane strain, mode I analysis)
- Stress intensity factors for a penny-shaped crack in a transversely isotropic layer bonded between two isotropic half spaces
- Dynamic behavior of a cylindrical crack in a functionally graded interlayer under torsional loading
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