Two plateau characteristics of re-entrant auxetic honeycomb along concave direction
Auxetic honeycombs usually feature a single plateau stress, which hinders their
multifunctional applications. In this work, we aim at investigating the two plateau …
multifunctional applications. In this work, we aim at investigating the two plateau …
[HTML][HTML] Vibration analysis of size dependent micro FML cylindrical shell reinforced by CNTs based on modified couple stress theory
In this manuscript, the sequel of agglomeration on the vibration of fiber metal laminated
(FML) cylindrical shell in the micro phase using developed couple stress theory (MCST) …
(FML) cylindrical shell in the micro phase using developed couple stress theory (MCST) …
A method for improving wave suppression ability of acoustic black hole plate in low-frequency range
Z Wan, X Zhu, T Li, J Fu - Thin-Walled Structures, 2023 - Elsevier
The acoustic black holes (ABH) with the power-law profile are applied in many fields, such
as vibration control, energy collection, etc. It is widely known that the ABH only works above …
as vibration control, energy collection, etc. It is widely known that the ABH only works above …
Thermal vibration analysis of functionally graded conical-cylindrical coupled shell based on spectro-geometric method
X Shi, P Zuo, R Zhong, C Guo, Q Wang - Thin-Walled Structures, 2022 - Elsevier
In this article, an analytical model is presented for vibration analysis of functionally graded
conical–cylindrical coupled shell (FG-CCCS) subjected to thermal environment. In the …
conical–cylindrical coupled shell (FG-CCCS) subjected to thermal environment. In the …
A review on computational linear and nonlinear dynamic analysis of shell-type composite structures
Composite materials allow the production of structures with desired and improved properties
(such as high strength), while minimizing the undesirable outcomes (eg, increased weight) …
(such as high strength), while minimizing the undesirable outcomes (eg, increased weight) …
Nonlinear thermomechanical analysis of GPLRC cylindrical shells using HSDT enriched by quasi-3D ANS cover functions
In this paper, a new analytical approach to the nonlinear analysis of functionally graded
graphene platelet reinforced composite (FG-GPLRC) laminated cylindrical shells under …
graphene platelet reinforced composite (FG-GPLRC) laminated cylindrical shells under …
The probabilistic dynamic stability analysis of fluid-filled porous cylindrical shells reinforced with graphene platelets
The aim of the current paper is the probabilistic dynamic stability analysis of graphene-
reinforced functionally graded porous cylindrical shells under dynamic axial loads. For this …
reinforced functionally graded porous cylindrical shells under dynamic axial loads. For this …
Nonlinear vibration analysis of a double curved shallow sandwich shell in which the core made of three-phase nanocomposite and the two-outer layer of …
This paper investigates the nonlinear vibrations of a double curved shallow sandwich shell
with a three-phase nanocomposite core and two outer electromagnetic layers considering …
with a three-phase nanocomposite core and two outer electromagnetic layers considering …
Free vibration analysis of FGM spherical and elliptical shells under nonlinear thermal environments
W Jiammeepreecha, K Chaidachatorn… - Thin-Walled …, 2024 - Elsevier
The thermo-mechanical effects of the free vibration of functionally graded (FG) spherical and
elliptical shells under nonlinear temperature distributions (NTD) are investigated. The …
elliptical shells under nonlinear temperature distributions (NTD) are investigated. The …
A hybrid algorithm for modeling and studying of the effect of material and mechanical uncertainties on stability of sandwich FGM materials under thermal shock
Functionally graded material (FGM) structures are commonly used to withstand thermal
stresses. These structures are very likely to experience thermal shocks. Given their nature …
stresses. These structures are very likely to experience thermal shocks. Given their nature …