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Buckling and forced oscillation of organic nanoplates taking the structural drag coefficient into account
This work is the first to apply nonlocal theory and a variety of deformation plate theories to
study the issue of forced vibration and buckling in organic nanoplates, where the effect of the …
study the issue of forced vibration and buckling in organic nanoplates, where the effect of the …
[HTML][HTML] Phase field modelling of crack propagation in functionally graded materials
S Natarajan, RK Annabattula… - Composites Part B …, 2019 - Elsevier
We present a phase field formulation for fracture in functionally graded materials (FGMs).
The model builds upon homogenization theory and accounts for the spatial variation of …
The model builds upon homogenization theory and accounts for the spatial variation of …
Finite element modeling of the bending and vibration behavior of three-layer composite plates with a crack in the core layer
For multi-layered composite plates made up of different types of material components, each
layer commonly has a different reinforcement angle (angle-ply). In the working process …
layer commonly has a different reinforcement angle (angle-ply). In the working process …
Phase-field method of crack branching during SC-CO2 fracturing: A new energy release rate criterion coupling pore pressure gradient
The critical energy release rate of the crack is always set as an inherent material property
(constant value) in the phase-field method (PFM) to depict the compression-shear and …
(constant value) in the phase-field method (PFM) to depict the compression-shear and …
Finite element modeling of free vibration of cracked nanoplates with flexoelectric effects
This work for the first time combines the theory of high-order shear deformation and the
phase-field approach to simulate the free vibration response of cracked nanoplates taking …
phase-field approach to simulate the free vibration response of cracked nanoplates taking …
NURBS-based isogeometric thermal postbuckling analysis of temperature dependent graphene reinforced composite laminated plates
Y Kiani - Thin-Walled Structures, 2018 - Elsevier
A thermal postbuckling analysis for composite laminated plates reinforced with graphene
sheets is performed in this research. All of the thermomechanical properties of the composite …
sheets is performed in this research. All of the thermomechanical properties of the composite …
Thermal buckling analysis of cracked functionally graded plates
Because structures made of FG material often operate in high temperature environments, it
is critical to understand the mechanical behavior of these structures while taking …
is critical to understand the mechanical behavior of these structures while taking …
Phase field model for fracture based on modified couple stress
The crack propagation behavior of plane strain micro-plates is studied in this paper using
the modified couple stress theory and the phase-field theory. To the best of our knowledge …
the modified couple stress theory and the phase-field theory. To the best of our knowledge …
Rectangular and skew shear buckling of FG-CNT reinforced composite skew plates using Ritz method
Present research deals with the shear buckling behaviour of composite skew plates
reinforced with aligned single walled carbon nanotubes (CNTs). Distribution of CNTs across …
reinforced with aligned single walled carbon nanotubes (CNTs). Distribution of CNTs across …
A semi-analytical stochastic buckling quantification of porous functionally graded plates
MC Trinh, T Mukhopadhyay, SE Kim - Aerospace Science and Technology, 2020 - Elsevier
This paper introduces a semi-analytical approach integrated with Monte Carlo simulation for
stochastic buckling analyses of porous functionally graded plates arising due to the …
stochastic buckling analyses of porous functionally graded plates arising due to the …