In this paper, we study the spectral properties of a finite system of flexural elements connected by gyroscopic spinners. We determine how the eigenfrequencies and eigenmodes of the system depend on the gyricity of the spinners. In addition, we present a transient numerical simulation that shows how a gyroscopic spinner attached to the end of a hinged beam can be used as a 'stabilizer', reducing the displacements of the beam. We also discuss the dispersive properties of an infinite periodic system of beams with gyroscopic spinners at the junctions. In particular, we investigate how the band-gaps of the structure can be tuned by varying the gyricity of the spinners
We consider the propagation of waves in a flexural medium composed of massless beams joining a perio...
The transient analysis of gyro-elastic structured media, composed of periodically placed masses inte...
The transient analysis of gyro-elastic structured media, composed of periodically placed masses inte...
In this paper, we study the spectral properties of a finite system of flexural elements connected by...
This article presents a novel chiral structure, consisting of Euler-Bernoulli beams connected to gyr...
The paper presents a model of a chiral multi-structure incorporating gyro-elastic beams. Floquet-Blo...
The paper presents a model of a chiral multi-structure incorporating gyro-elastic beams. Floquet–Blo...
The paper presents a model of a chiral multi-structure incorporating gyro-elastic beams. Floquet-Blo...
We develop a new asymptotic model of the dynamic interaction between an elastic structure and a syst...
In this paper, we demonstrate a new approach to control flexural elastic waves in a structured chira...
This paper presents, for the first time, an analytical formulation to determine the transient respon...
In this paper, we demonstrate a new approach to control flexural elastic waves in a structured chira...
We demonstrate a new method of achieving topologically protected states in an elastic hexagonal syst...
A new class of elastic waveforms, referred to as “chiral flexural waves”, is introduced for a multi-...
An infinite heterogeneous elastic triangular lattice connected to a non-uniform array of gyroscopic ...
We consider the propagation of waves in a flexural medium composed of massless beams joining a perio...
The transient analysis of gyro-elastic structured media, composed of periodically placed masses inte...
The transient analysis of gyro-elastic structured media, composed of periodically placed masses inte...
In this paper, we study the spectral properties of a finite system of flexural elements connected by...
This article presents a novel chiral structure, consisting of Euler-Bernoulli beams connected to gyr...
The paper presents a model of a chiral multi-structure incorporating gyro-elastic beams. Floquet-Blo...
The paper presents a model of a chiral multi-structure incorporating gyro-elastic beams. Floquet–Blo...
The paper presents a model of a chiral multi-structure incorporating gyro-elastic beams. Floquet-Blo...
We develop a new asymptotic model of the dynamic interaction between an elastic structure and a syst...
In this paper, we demonstrate a new approach to control flexural elastic waves in a structured chira...
This paper presents, for the first time, an analytical formulation to determine the transient respon...
In this paper, we demonstrate a new approach to control flexural elastic waves in a structured chira...
We demonstrate a new method of achieving topologically protected states in an elastic hexagonal syst...
A new class of elastic waveforms, referred to as “chiral flexural waves”, is introduced for a multi-...
An infinite heterogeneous elastic triangular lattice connected to a non-uniform array of gyroscopic ...
We consider the propagation of waves in a flexural medium composed of massless beams joining a perio...
The transient analysis of gyro-elastic structured media, composed of periodically placed masses inte...
The transient analysis of gyro-elastic structured media, composed of periodically placed masses inte...