The curved-beam finite element formulation by trigonometric function for curvature is presented. Instead of displacement function, trigonometric function is introduced for curvature to avoid the shear and membrane locking phenomena. Element formulation is carried out in polar coordinates. The element with three nodal parameters is chosen on curvature. Then, curvature field in the element is interpolated as the conventional trigonometric functions. Shape functions are obtained as usual by matrix operations. To consider the boundary conditions, a transformation matrix between nodal curvature and nodal displacement vectors is introduced. The equilibrium equation is written by minimizing the total potential energy in terms of the displacement c...
[[abstract]]To overcome the difficulty involved in selecting proper shape functions for simulating t...
The purpose of this paper is to define an analytical and numerical procedure for determining the pre...
Curvature- and displacement-based finite element analyses of flexible four-bar mechanisms Y-L Kuo1 a...
The curved-beam finite element formulation by trigonometric function for curvature is presented...
In this paper, a finite element technique was used to determine the natural frequencies, and the mod...
A displacement-based, novel curved beam element is proposed for efficient and reliable analysis of f...
A new nonlinear geometric curved-beam finite element is developed for three dimensional space system...
The article extends the formulation of a 2D geometrically exact beam element proposed by Jirasek et ...
The geometrically nonlinear formulation of three-dimensional (3D) curved beam elements with large ro...
A new finite element for linear analysis of arbitrarily curved plane beams is developed. Based on a ...
A new finite element for linear analysis of arbitrarily curved plane beams is developed. Based on a ...
none2A new finite element for linear analysis of arbitrarily curved plane beams is developed. Based ...
A two-node finite element for relatively compact, solid curved beams is derived. A node is located a...
The article extends the formulation of a 2D geometrically exact beam element proposed by Jirasek et ...
The finite element analysis of curved structures (arches, shells) has always presented great difficu...
[[abstract]]To overcome the difficulty involved in selecting proper shape functions for simulating t...
The purpose of this paper is to define an analytical and numerical procedure for determining the pre...
Curvature- and displacement-based finite element analyses of flexible four-bar mechanisms Y-L Kuo1 a...
The curved-beam finite element formulation by trigonometric function for curvature is presented...
In this paper, a finite element technique was used to determine the natural frequencies, and the mod...
A displacement-based, novel curved beam element is proposed for efficient and reliable analysis of f...
A new nonlinear geometric curved-beam finite element is developed for three dimensional space system...
The article extends the formulation of a 2D geometrically exact beam element proposed by Jirasek et ...
The geometrically nonlinear formulation of three-dimensional (3D) curved beam elements with large ro...
A new finite element for linear analysis of arbitrarily curved plane beams is developed. Based on a ...
A new finite element for linear analysis of arbitrarily curved plane beams is developed. Based on a ...
none2A new finite element for linear analysis of arbitrarily curved plane beams is developed. Based ...
A two-node finite element for relatively compact, solid curved beams is derived. A node is located a...
The article extends the formulation of a 2D geometrically exact beam element proposed by Jirasek et ...
The finite element analysis of curved structures (arches, shells) has always presented great difficu...
[[abstract]]To overcome the difficulty involved in selecting proper shape functions for simulating t...
The purpose of this paper is to define an analytical and numerical procedure for determining the pre...
Curvature- and displacement-based finite element analyses of flexible four-bar mechanisms Y-L Kuo1 a...