A Multimode Approach to Geometrically Nonlinear Free and Forced Vibrations of Multistepped Beams

Author:

El Hantati Issam12ORCID,Adri Ahmed1ORCID,Fakhreddine Hatim12ORCID,Rifai Said1ORCID,Benamar Rhali3ORCID

Affiliation:

1. Laboratory of Mechanics Production and Industrial Engineering (LMPGI), High School of Technology (ESTC), Hassan II University of Casablanca, Route d’ElJadida, Km 7, Oasis, Casablanca 8012, Morocco

2. Doctoral Studies Center of National High School of Electricity and Mechanics (ENSEM), Hassan II University of Casablanca, Route d’ElJadida, Km 7, Oasis, Casablanca 8018, Morocco

3. Mohammed V University in Rabat, EMI-Rabat, LERSIM, B.P. 765, Agdal, Rabat, Morocco

Abstract

The scope of this study is to present a contribution to the geometrically nonlinear free and forced vibration of multiple-stepped beams, based on the theories of Euler–Bernoulli and von Karman, in order to calculate their corresponding amplitude-dependent modes and frequencies. Discrete expressions of the strain energy and kinetic energies are derived, and Hamilton’s principle is applied to reduce the problem to a solution of a nonlinear algebraic system and then solved by an approximate method. The forced vibration is then studied based on a multimode approach. The effect of nonlinearity on the dynamic behaviour of multistepped beams in the free and forced vibration is demonstrated and discussed. The effect of varying some geometrical parameters of the stepped beams in the free and forced cases is investigated and illustrated, among which is the variation in the level of excitation.

Publisher

Hindawi Limited

Subject

Mechanical Engineering,Mechanics of Materials,Geotechnical Engineering and Engineering Geology,Condensed Matter Physics,Civil and Structural Engineering

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