A simple numerical method is applied to calculate the large deflection of a cantilever beam under an elastic-plastic deformation by dividing the deformed axis into a number of small segments. Assuming that each segment can be approximated as a circular arc, the method allows large deflections and plastic deformation to be analyzed. The main interests are the load-deflection relationship, curvature distribution along the beam and the length of the plastic region. The method is proved to be easy and particularly versatile. Comparisons with other studies are given
A numerical algorithm of the investigation of stress-strain state of the elastic-plastic solids with...
The classical problem of the deflection of a cantilever beam of linear elastic material, under the a...
Abstract. In this paper a mathematical model is discussed describing the deformation of a cantilever...
The large deflection of an elastoplastic beam with prescribed moving and rotating end conditions is ...
The aim of this work is to simulate the elastoplastic behavior in large displacements of a beam of n...
Although the deflection of beams has been studied for decades, the solutions were either linearized ...
A solution for the elastoplastic deflection of cantilever beams with linearly variable circular cros...
© 2014 L. U. Sultanov and R. L. Davydov. The paper is devoted to development and numerical implement...
Based on the Plastica theory (see ref. [12]), the large deflection of an elastic-perfectly plastic c...
ABSTRACT: A general method for the large deflection analysis of inelastic plane frames is presented....
This paper concerns the large deflection of elastoplastic, non-linear strain-hardening cantilevers o...
We analyzed the large deflections of a uniform cantilever beam under the action of a combined load c...
An extension of the theory of the Elastica is developed to determine the shape of a strut (or a cant...
The ultimate load of a typical steel frame is dependent on the geometrically nonlinear and material ...
This paper deals with the large deflections (finite) of thin cantilever beams of nonlinear materials...
A numerical algorithm of the investigation of stress-strain state of the elastic-plastic solids with...
The classical problem of the deflection of a cantilever beam of linear elastic material, under the a...
Abstract. In this paper a mathematical model is discussed describing the deformation of a cantilever...
The large deflection of an elastoplastic beam with prescribed moving and rotating end conditions is ...
The aim of this work is to simulate the elastoplastic behavior in large displacements of a beam of n...
Although the deflection of beams has been studied for decades, the solutions were either linearized ...
A solution for the elastoplastic deflection of cantilever beams with linearly variable circular cros...
© 2014 L. U. Sultanov and R. L. Davydov. The paper is devoted to development and numerical implement...
Based on the Plastica theory (see ref. [12]), the large deflection of an elastic-perfectly plastic c...
ABSTRACT: A general method for the large deflection analysis of inelastic plane frames is presented....
This paper concerns the large deflection of elastoplastic, non-linear strain-hardening cantilevers o...
We analyzed the large deflections of a uniform cantilever beam under the action of a combined load c...
An extension of the theory of the Elastica is developed to determine the shape of a strut (or a cant...
The ultimate load of a typical steel frame is dependent on the geometrically nonlinear and material ...
This paper deals with the large deflections (finite) of thin cantilever beams of nonlinear materials...
A numerical algorithm of the investigation of stress-strain state of the elastic-plastic solids with...
The classical problem of the deflection of a cantilever beam of linear elastic material, under the a...
Abstract. In this paper a mathematical model is discussed describing the deformation of a cantilever...