Size-dependent thermal buckling analysis of micro composite laminated beams using modified couple stress theory
From MaRDI portal
Publication:1623110
DOI10.1016/j.ijengsci.2015.03.005zbMath1423.74348OpenAlexW2050375727MaRDI QIDQ1623110
A. R. Daneshmehr, M. Homayounfard, M. Mohammad-Abadi
Publication date: 23 November 2018
Published in: International Journal of Engineering Science (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.ijengsci.2015.03.005
size effectthermal effectmodified couple stress theorybuckling analysiscomposite laminated beamGDQ method
Related Items
The influence of size effect on flapwise vibration of rotating microbeams ⋮ Chaotic motion of a parametrically excited microbeam ⋮ An investigation into size-dependent vibration damping characteristics of functionally graded viscoelastically damped sandwich microbeams ⋮ Size-dependent frequency and stability characteristics of axially moving microbeams based on modified couple stress theory ⋮ On the mechanics of laminated microplates ⋮ On buckling and post-buckling behavior of functionally graded micro-beams in thermal environment ⋮ Analytical solutions for the size dependent buckling and postbuckling behavior of functionally graded micro-plates ⋮ Size-dependent performance of microgyroscopes ⋮ A size-dependent model for coupled 3D deformations of nonlinear microbridges ⋮ On size-dependent lead-lag vibration of rotating microcantilevers ⋮ Free flexural vibration of geometrically imperfect functionally graded microbeams ⋮ On size-dependent nonlinear vibration of porous and imperfect functionally graded tapered microbeams ⋮ On size-dependent Timoshenko beam element based on modified couple stress theory ⋮ On the mechanics of laminated doubly-curved shells subjected to point and line loads ⋮ Thermal buckling and postbuckling analysis of size-dependent composite laminated microbeams based on a new modified couple stress theory ⋮ Unnamed Item ⋮ A review on the mechanics of functionally graded nanoscale and microscale structures ⋮ Size effect and geometrically nonlinear effect on thermal post-buckling of micro-beams: a new theoretical analysis ⋮ On the strain gradient effects on buckling of the partially covered laminated microbeam ⋮ The size-dependent thermal bending and buckling analyses of composite laminate microplate based on new modified couple stress theory and isogeometric analysis
Cites Work
- Unnamed Item
- Size-dependent free vibration analysis of composite laminated Timoshenko beam based on new modified couple stress theory
- The size-dependent natural frequency of Bernoulli-Euler micro-beams
- A nonlinear Timoshenko beam formulation based on the modified couple stress theory
- Nonlinear non-classical microscale beams: static bending, postbuckling and free vibration
- A microstructure-dependent Timoshenko beam model based on a modified couple stress theory
- Elastic materials with couple-stresses
- Implementation of clamped and simply supported boundary conditions in the GDQ free vibration analysis of beams and plates
- Free vibration of cross-ply laminated beams with arbitrary boundary conditions
- Experiments and theory in strain gradient elasticity.
- Size dependent buckling analysis of microbeams based on modified couple stress theory with high order theories and general boundary conditions
- An investigation of modified couple stress theory in buckling analysis of micro composite laminated Euler-Bernoulli and Timoshenko beams
- Bending and vibration of functionally graded microbeams using a new higher order beam theory and the modified couple stress theory
- Size-dependent vibration analysis of three-dimensional cylindrical microbeams based on modified couple stress theory: a unified treatment
- Thermo-mechanical dynamics of perfect and imperfect Timoshenko microbeams
- Strain gradient elasticity and modified couple stress models for buckling analysis of axially loaded micro-scaled beams
- Couple stress based strain gradient theory for elasticity
- On the equivalence of generalized differential quadrature and highest order finite difference scheme
- Effect of couple-stresses on the elastic bending of beams
- Effects of couple-stresses in linear elasticity
- Micro-structure in linear elasticity
- A Simple Higher-Order Theory for Laminated Composite Plates
- Fluid-Structure Interaction in Microchannel Using Lattice Boltzmann Method and Size-Dependent Beam Element