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JOURNALS // Sibirskii Zhurnal Industrial'noi Matematiki // Archive

Sib. Zh. Ind. Mat., 2017 Volume 20, Number 1, Pages 3–10 (Mi sjim943)

This article is cited in 4 papers

Identification of the fixedness and loadedness of an end of an Euler–Bernoulli beam from its natural vibration frequencies

A. A. Aitbaevaa, A. M. Akhtyamovba

a Mavlyutovs Institute of Mechanics, Ufa Scientific Center RAS, October ave., 71, 450054 Ufa
b Bashkir State University, Zaki Validi str., 32, 450076 Ufa

Abstract: We consider a uniform Euler–Bernoulli beam whose left end is fixed and whose right end has a load fixed by two springs. Being hit, the beam starts vibrating. The aim of the paper is to determine the fixedness parameters (the spring stiffness coefficients) and the loadedness parameters (the mass and moment of inertia of the load) of the right end of the beam from the natural frequencies of its bending vibrations. We show that the four unknown parameters of the boundary conditions on the right end of the beam are uniquely determined by five natural frequencies of bending vibrations. A counterexample is exhibited demonstrating that four natural frequencies are insufficient for the unique identification of these four nonnegative parameters.

Keywords: eigenvalue, natural frequency, beam, inverse problem, point inertia element, spring stiffness coefficient.

UDC: 519.624+534.1

Received: 06.02.2016

DOI: 10.17377/sibjim.2017.20.101


 English version:
Journal of Applied and Industrial Mathematics, 2017, 11:1, 1–7

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