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Journal ArticleDOI

Genetic algorithm based reconstruction of the elastic moduli of orthotropic plates using an ultrasonic guided wave single-transmitter-multiple-receiver SHM array

J. Vishnuvardhan, +2 more
- 08 Aug 2007 - 
- Vol. 16, Iss: 5, pp 1639-1650
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TLDR
In this article, a single-transmitter-multiple-receiver (STMR) compact structural health monitoring (SHM) array is used to reconstruct the elastic moduli of orthotropic plate structures.
Abstract
The reconstruction of all nine unknown elastic moduli of orthotropic plate structures has been achieved using a single-transmitter-multiple-receiver (STMR) compact structural health monitoring (SHM) array. This method uses the velocity measurement of the fundamental guided Lamb wave modes (S0 and A0), generated from a central transmitter, and received by a sparse array of receivers that encircle the transmitter. The measured velocities are then used in an inversion algorithm based on genetic algorithms. A prototype compact STMR array was developed and used in the measurement. Simulated data were used to demonstrate the feasibility of the technique. Experiments were conducted on 3.15 mm graphite–epoxy composite plate using a PZT based STMR array as well as laser vibrometer based displacement measurement. Experimental Lamb wave velocity data were used to validate the present technique. This technique finds application in the areas of material characterization and SHM of anisotropic plate-like structures used in aerospace and automobile components made using fiber reinforced composites.

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Citations
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Journal ArticleDOI

Semi-analytical formulation for the guided waves-based reconstruction of elastic moduli

TL;DR: In this article, an inverse procedure based on the propagation of guided ultrasonic waves is proposed for the characterization of the elastic material constants of plates, which consists of an optimization problem in which the discrepancy between the dispersion curves obtained through a semi analytical finite element (SAFE) formulation and numerical or experimental dispersion curve is minimized.
Journal ArticleDOI

Structural health monitoring of anisotropic plates using ultrasonic guided wave STMR array patches

TL;DR: In this article, two flexible printed circuit board (PCB)-based patches were developed for accomplishing both objectives, i.e. online material characterization (MC) and structural health monitoring (SHM) of anisotropic plate-like structures.
Journal ArticleDOI

Identification of material properties of composite materials using nondestructive vibrational evaluation approaches: A review

TL;DR: A review on the development of nondestructive vibrational evaluation approaches in identifying the elastic constants of composite plates, in experimental and numerical manners, in order to enlighten researchers with the current trends of nonsmooth vibrational approaches is presented in this article.
Journal ArticleDOI

On the computation of dispersion curves for axisymmetric elastic waveguides using the Scaled Boundary Finite Element Method

TL;DR: An algorithm to compute specific parts of the dispersion curves for elastic waveguides based on an axisymmetric representation of the Scaled Boundary Finite Element Method.
Journal ArticleDOI

Genetic algorithms-based inversion of multimode guided waves for cortical bone characterization.

TL;DR: This paper introduces an efficient inversion method based on genetic algorithms using multimode guided waves, in which the mode-order is kept blind, and shows that the model parameters are in good agreement with the reference values derived from x-ray micro-computed tomography.
References
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Journal ArticleDOI

A laser study of transient Lamb waves in thin materials

TL;DR: In this paper, a method is described by which transient ultrasonic Lamb waves may be generated and detected within thin materials, using laser techniques, where only the two lowest-order modes of Lamb waves need be considered.
Journal ArticleDOI

Distributed structural health monitoring system based on smart wireless sensor and multi-agent technology

TL;DR: A distributed smart wireless sensor network based on the Berkeley Mote Mica wireless sensor platform and multi-agent technology to manage the whole health monitoring system for large scale engineering structures is designed.
Proceedings ArticleDOI

Guided wave tomography on an aircraft wing with leave in place sensors

TL;DR: In this article, a leave in place sensor and guided wave tomographic techniques are combined together in structural health monitoring aging aircraft in a sample problem, eight PZT transducers are mounted on the surface of the wing of an E2 aircraft.
Journal ArticleDOI

A hybrid piezoelectric/fiber optic diagnostic system for structural health monitoring

TL;DR: A hybrid piezoelectric/fiber optic diagnostic system has been developed for quick non-destructive evaluation and long term health monitoring of aerospace vehicles and structures as discussed by the authors, which consists of three major parts: a diagnostic layer with a network of pieziolectric elements and fiber gratings to offer a simple and efficient way to integrate a large network of transducers onto a structure; diagnostic hardware consisting of an arbitrary waveform generator and a high speed fiber grating demodulation unit together with a high-speed data acquisition card to provide actuation input, data collection,
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