AbstractAim of this paper is the response evaluation of fractional visco-elastic Euler–Bernoulli beam under quasi-static and dynamic loads. Starting from the local fractional visco-elastic relationship between axial stress and axial strain, it is shown that bending moment, curvature, shear, and the gradient of curvature involve fractional operators. Solution of particular example problems are studied in detail providing a correct position of mechanical boundary conditions. Moreover, it is shown that, for homogeneous beam both correspondence principles also hold in the case of Euler–Bernoulli beam with fractional constitutive law. Virtual work principle is also derived and applied to some case studies
In capturing visco-elastic behavior, experimental tests play a fundamental rule, since they allow to...
In this study the Finite Element Method (FEM) on viscoelastic frames is presented. It is assumed tha...
This paper deals with the response determination of a visco-elastic Timoshenko beam under static loa...
AbstractAim of this paper is the response evaluation of fractional visco-elastic Euler–Bernoulli bea...
Aim of this paper is the response evaluation of fractional visco-elastic Euler-Bernoulli beam under ...
The Euler-Bernoulli beam theory is well established in such a way that engineers are very confident ...
The Euler-Bernoulli beam theory is well established in such a way that engineers are very confident ...
With increasing advanced manufacturing process, visco-elastic materials are very attractive for miti...
The aim of the present paper is the dynamic analysis of Euler-Bernoulli beam, characterized by fract...
In the paper, the dynamic response of a simply supported viscoelastic beam of the fractional derivat...
Fractional Viscoelasticity is referred to materials, whose constitutive law involves fractional deri...
The focus of the current work is to present the bending analysis of visco-elastic beams based on Red...
In the paper, the dynamic response of a simply supported viscoelastic beam of the fractional derivat...
Fractional hereditary materials are characterized for the presence, in the stress-strain relations, ...
This is the accepted version of the following article: "A numerical method for solving fractional-or...
In capturing visco-elastic behavior, experimental tests play a fundamental rule, since they allow to...
In this study the Finite Element Method (FEM) on viscoelastic frames is presented. It is assumed tha...
This paper deals with the response determination of a visco-elastic Timoshenko beam under static loa...
AbstractAim of this paper is the response evaluation of fractional visco-elastic Euler–Bernoulli bea...
Aim of this paper is the response evaluation of fractional visco-elastic Euler-Bernoulli beam under ...
The Euler-Bernoulli beam theory is well established in such a way that engineers are very confident ...
The Euler-Bernoulli beam theory is well established in such a way that engineers are very confident ...
With increasing advanced manufacturing process, visco-elastic materials are very attractive for miti...
The aim of the present paper is the dynamic analysis of Euler-Bernoulli beam, characterized by fract...
In the paper, the dynamic response of a simply supported viscoelastic beam of the fractional derivat...
Fractional Viscoelasticity is referred to materials, whose constitutive law involves fractional deri...
The focus of the current work is to present the bending analysis of visco-elastic beams based on Red...
In the paper, the dynamic response of a simply supported viscoelastic beam of the fractional derivat...
Fractional hereditary materials are characterized for the presence, in the stress-strain relations, ...
This is the accepted version of the following article: "A numerical method for solving fractional-or...
In capturing visco-elastic behavior, experimental tests play a fundamental rule, since they allow to...
In this study the Finite Element Method (FEM) on viscoelastic frames is presented. It is assumed tha...
This paper deals with the response determination of a visco-elastic Timoshenko beam under static loa...