Results 41 to 50 of about 18,348 (202)

Static Bending and Vibration Analysis of a Rectangular Functionally Gradient Piezoelectric Plate on an Elastic Foundation

open access: yesApplied Sciences, 2022
In this paper, a functionally graded piezoelectric plate on an elastic foundation composed of two different piezoelectric materials bonded together in the form of plate is studied, and its static bending and fundamental frequencies are analyzed.
Wei Wang, Haonan Li, Linquan Yao
doaj   +1 more source

A wave near the edge of a circular disk

open access: yes, 2008
It is shown that in the Love-Kirchhoff plate theory, an edge wave can travel in a circular thin disk made of an isotropic elastic material. This disk edge wave turns out to be faster than the classic flexural acoustic wave in a straight-edged, semi ...
Destrade, Michel, Fu, Yibin
core   +2 more sources

Long-Time Behavior of Quasilinear Thermoelastic Kirchhoff-Love Plates with Second Sound [PDF]

open access: yes, 2018
We consider an initial-boundary-value problem for a thermoelastic Kirchhoff & Love plate, thermally insulated and simply supported on the boundary, incorporating rotational inertia and a quasilinear hypoelastic response, while the heat effects are ...
Lasiecka, Irena   +2 more
core   +3 more sources

Three-dimensional flat shell-to-shell coupling: numerical challenges

open access: yesCurved and Layered Structures, 2017
The node-to-surface formulation is widely used in contact simulations with finite elements because it is relatively easy to implement using different types of element discretizations.
Guo Kuo, Haikal Ghadir
doaj   +1 more source

A new locking-free polygonal plate element for thin and thick plates based on Reissner-Mindlin plate theory and assumed shear strain fields

open access: yes, 2018
A new $n-$ noded polygonal plate element is proposed for the analysis of plate structures comprising of thin and thick members. The formulation is based on the discrete Kirchhoff Mindlin theory.
Bordas, Stephane PA   +2 more
core   +1 more source

Scaled boundary isogeometric analysis with C1 coupling for Kirchhoff‐Love theory

open access: yesPAMM, 2023
AbstractScaled boundary isogeometric analysis (SB‐IGA) describes the computational domain by proper boundary NURBS together with a well‐defined scaling center; see [5]. More precisely, we consider star convex domains whose domain boundaries correspond to a sequence of NURBS curves and the interior is determined by a scaling of the boundary segments ...
Arf, Jeremias   +3 more
openaire   +5 more sources

Modeling the flexoelectric effect of an anisotropic dielectric nanoplate

open access: yesAlexandria Engineering Journal, 2021
The static bending and the flexoelectric effect induced in an anisotropic dielectric nano-plate are studied in the frame of the simplified strain gradient elasticity theory (SSGT).
A.R. El Dhaba, M.E. Gabr
doaj   +1 more source

Low-complexity computation of plate eigenmodes with Vekua approximations and the Method of Particular Solutions [PDF]

open access: yes, 2013
This paper extends the Method of Particular Solutions (MPS) to the computation of eigenfrequencies and eigenmodes of plates. Specific approximation schemes are developed, with plane waves (MPS-PW) or Fourier-Bessel functions (MPS-FB). This framework also
Chardon, Gilles, Daudet, Laurent
core   +5 more sources

Hard‐Magnetic Soft Millirobots in Underactuated Systems

open access: yesAdvanced Robotics Research, EarlyView.
This review provides a comprehensive overview of hard‐magnetic soft millirobots in underactuated systems. It examines key advances in structural design, physics‐informed modeling, and control strategies, while highlighting the interplay among these domains.
Qiong Wang   +4 more
wiley   +1 more source

Combined Semianalytical and Numerical Static Plate Analysis. Part 2: Resultant Multipoint Boundary Problem

open access: yesMATEC Web of Conferences, 2018
The distinctive paper is devoted to solution of multipoint boundary problem of plate analysis (Kirchhoff model) based on combined application of finite element method (FEM) and discrete-continual finite element method (DCFEM).
Negrozov Oleg   +2 more
doaj   +1 more source

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