Deformation and long-term damage of fibrous materials with the stress-rupture microstrength of the matrix described by a fractional-power function
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Publication:368255
DOI10.1007/S10778-010-0259-7zbMath1272.74591OpenAlexW1967866666MaRDI QIDQ368255
E. N. Shikula, Leonid Khoroshun
Publication date: 23 September 2013
Published in: International Applied Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10778-010-0259-7
composite materialsstress-strain stateeffective characteristicsstochastic structurelong-term damageporosity balance equationfractional power functionporosity of matrix
Related Items (7)
Coupled processes of deformation and long-term damage of fibrous materials under thermal loading ⋮ Coupled processes of deformation and long-term damage of layered materials under thermal loading ⋮ Deformation and long-term damage of physically nonlinear fibrous materials ⋮ Theory of long-term microdamage of physically nonlinear homogeneous materials ⋮ Deformation and long-term damage of physically nonlinear particulate composites ⋮ Deformation and long-term damage of homogeneous and composite materials of stochastic structure (review) ⋮ Deformation and damage of linear elastic homogeneous and composite materials (review)
Cites Work
- Methods of theory of random functions in problems of macroscopic properties of microinhomogeneous media
- Deformation of a laminated composite with a physically nonlinear reinforcement and microdamageable matrix
- Short-term microdamage of laminated material with nonlinear matrix and microdamaged reinforcement
- Saturated porous media
- Conditional-moment method in problems of the mechanics of composite materials
- Theory of Short-Term Microdamageability for a Homogeneous Material under Physically Nonlinear Deformation
- Deformation of Particulate Composite with Physically Nonlinear Inclusions and Microdamageable Matrix
- Influence of the Physical Nonlinearity of the Matrix on the Deformation of a Particulate Composite with Microdamageable Inclusions
- Short-Term Microdamage of a Granular Material under Physically Nonlinear Deformation
- Influence of Physically Nonlinear Deformation on Short-Term Microdamage of a Laminar Material
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