Beam-like damage detection methodology using wavelet damage ratio and additional roving mass

Author:

C. Santos Juliana1ORCID,V. G. de Morais Marcus1ORCID,R. Machado Marcela1ORCID,Silva Ramon1ORCID,U. L. Palechor Erwin2ORCID,V. Silva Welington1ORCID

Affiliation:

1. University of Brasilia, Brazil

2. Federal University of Cariri, Brazil

Abstract

Early damage detection plays an essential role in the safe and satisfactory maintenance of structures. This work investigates techniques use only damaged structure responses. A Timoshenko beam was modeled in finite element method, and an additional mass was applied along their length. Thus, a frequency-shift curve is observed, and different damage identification techniques were used, such as the discrete wavelet transform and the derivatives of the frequency-shift curve. A new index called wavelet damage ratio(WDR) is defined as a metric to measure the damage levels. Damages were simulated like a mass discontinuity and a rotational spring (stiffness damage). Both models were compared to experimental tests since the mass added to the structure is a non-destructive tool. It was evaluated different damage levels and positions. Numerical results showed that all proposed techniques are efficient techniques for damage identification in Timoshenko's beams concerning low computational cost and practical application.

Publisher

Gruppo Italiano Frattura

Subject

Mechanical Engineering,Mechanics of Materials,Civil and Structural Engineering

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