AbstractPrevious work examined the effect of the attached stiffness matrix terms on stability of an elastic beam undergoing prescribed large overall motion. The aim of the present work is to extend the nonlinear formulations to an elastic beam with free large overall motion. Based on initial stress method, the nonlinear coupling equations of elastic beams are obtained with free large overall motion and the attached stiffness matrix is derived by solving sub-static formulation. The angular velocity and the tip deformation of the elastic pendulum are calculated. The analytical results show that the simulation results of the present model are tabled and coincide with the one-order approximate model. It is shown that the simulation results acco...
A new flexible body dynamic formulation, called the Augmented Imbedded Geometric Constraint (AIGC) a...
A model for the dynamics of a Gao elastic nonlinear beam, which is subject to a horizontal traction ...
AbstractAccurate mechanical models of elastic beams undergoing large in-plane motions are discussed ...
The dynamic model of a flexible Timoshenko beam with geometrical nonlinearities subject to large ove...
In this paper the mathematical formulation of the equilibrium problem of high-flexible beams in the ...
In this paper, the dynamic modeling of a single-link flexible beam with a tip mass is given by using...
In this paper, the dynamic modeling of a single-link flexible beam with a tip mass is given by using...
This paper presents the study of the interaction between a beam and a nonlinear isolator for low and...
In this study, the nonlinear vibrations analysis of an inclined pinned-pinned self-weight Timoshenko...
AbstractThe exact equations of motion of a planar, initially straight, beam are determined within th...
According to the consistent energy principle and the deformation constraint equations, the consisten...
Linear theory is useful in determining small static and dynamic deflections. However, to characteriz...
Accurate mechanical models of elastic beams undergoing large in-plane motions are discussed theoreti...
A new flexible body dynamic formulation, called the Augmented Imbedded Geometric Constraint (AIGC) a...
This paper presents a study on the nonlinear steady state response of a slender beam partially immer...
A new flexible body dynamic formulation, called the Augmented Imbedded Geometric Constraint (AIGC) a...
A model for the dynamics of a Gao elastic nonlinear beam, which is subject to a horizontal traction ...
AbstractAccurate mechanical models of elastic beams undergoing large in-plane motions are discussed ...
The dynamic model of a flexible Timoshenko beam with geometrical nonlinearities subject to large ove...
In this paper the mathematical formulation of the equilibrium problem of high-flexible beams in the ...
In this paper, the dynamic modeling of a single-link flexible beam with a tip mass is given by using...
In this paper, the dynamic modeling of a single-link flexible beam with a tip mass is given by using...
This paper presents the study of the interaction between a beam and a nonlinear isolator for low and...
In this study, the nonlinear vibrations analysis of an inclined pinned-pinned self-weight Timoshenko...
AbstractThe exact equations of motion of a planar, initially straight, beam are determined within th...
According to the consistent energy principle and the deformation constraint equations, the consisten...
Linear theory is useful in determining small static and dynamic deflections. However, to characteriz...
Accurate mechanical models of elastic beams undergoing large in-plane motions are discussed theoreti...
A new flexible body dynamic formulation, called the Augmented Imbedded Geometric Constraint (AIGC) a...
This paper presents a study on the nonlinear steady state response of a slender beam partially immer...
A new flexible body dynamic formulation, called the Augmented Imbedded Geometric Constraint (AIGC) a...
A model for the dynamics of a Gao elastic nonlinear beam, which is subject to a horizontal traction ...
AbstractAccurate mechanical models of elastic beams undergoing large in-plane motions are discussed ...