Search results for "Ultrasonic sensor"

showing 10 items of 139 documents

Comparison of Statistical Methods for the Detection of Contrast Material in Echocardiographic Image Sequences

1987

Ultrasonic imaging of the heart is a diagnostic tool which is increasingly used in cardiology. In addition to the representation of important anatomical information two dimensional images provided by mechanical or electronically steered sector scanners can be used for the extraction of functional parameters of the heart (as e.g. enddiastolic volume or ejection fraction). A poor definition of the endocardial border especially resulting from the noisy appearance of the images and from qualitatively restricted echocardiograms leads to uncertainties in the quantitative analysis and therefore requires refined methods for the determination of functional parameters. Our investigations which are ba…

Computer sciencebusiness.industryContrast (statistics)Ultrasonic sensorComputer visionPattern recognitionArtificial intelligenceRepresentation (mathematics)Endocardial borderbusinessEchocardiographic imageUltrasonic imaging
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Detection, characterization and sizing of hydrogen induced cracking in pressure vessels using phased array ultrasonic data processing

2016

Abstract Pressure vessels operating in sour service conditions in refinery environments can be subject to the risk of H₂S cracking resulting from the hydrogen entering into the material. This risk, which is related to the specific working conditions and to the quality of the steel used, shall be properly managed in order to maintain the highest safety at a cost-effective level. Nowadays the typical management strategy is based on a risk based inspection (RBI) evaluation to define the inspection plan used in conjunction with a fitness for service (FFS) approach in defining if the vessel, although presenting dangerous defects such as cracks, can still be considered “fit for purpose” for a giv…

Data processingEngineeringTotal Focusing MethodPhased arraybusiness.industryUltrasonic testingMechanical engineering02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesPhased array ultrasonicsSizingPhased ArrayNDT modellingRisk-based inspectionFitness for Service0103 physical sciencesPhased Array HIC Fitness for Service Total Focusing Method NDT modellingUltrasonic sensorTime domain0210 nano-technologybusinessHIC010301 acousticsEarth-Surface Processes
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Electromagnetic and ultrasonic investigations on a Roman marble slab

2011

The archaeological museum of Rome asked our group about the physical consistency of a marble slab (second to third century AD) that recently fell during its travel as part of an exhibition. We decided to use different methodologies to investigate the slab: namely a pacometer (Protovale Elcometer) to individuate the internal coupling pins, and ground-penetrating radar (GPR) (2000 MHz) and ultrasonic (55 kHz) tomographic high-density surveys to investigate the internal extension of all the visible fractures and to search for the hidden ones. For the ultrasonic data, tests were carried out to optimize the inversion parameters, in particular the cell dimensions. Surely, the choice of cell size …

Data processingGeologyInversion (meteorology)Management Monitoring Policy and LawIndustrial and Manufacturing Engineeringlaw.inventionultrasonic tomography GPR covermeterGeophysicslawConsistency (statistics)Settore GEO/11 - Geofisica ApplicataGround-penetrating radarMeasuring instrumentSlabUltrasonic sensorRadarGeologySeismologyJournal of Geophysics and Engineering
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Laser Ultrasonics Inspection of Train Wheel - Evaluation of Optimized Setup

2021

In the railway field, the safety of passengers and the service life of train components are a crucial issue. For this reason, continuous periodic inspections by non-destructive techniques are required. Among these, ultrasonic tests are widely used in this field, even though the conventional ultrasound techniques have the disadvantage of requiring the disassembly of the wheels and of putting the train out of service. This procedure is expensive and time-consuming and can be neglected if non-contact ultrasonic techniques are used. In this work, the authors present an experimental research on some defects, artificially obtained on a railway wheel supplied by Trenitalia Spa, by adopting three d…

Defect detectionLaser ultrasonicsService (business)Laser ultrasonicsSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineComputer scienceService lifeUltrasonic sensorNon-contact ultrasoundConventional ultrasoundField (computer science)Automotive engineeringTrain wheel
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Laser-Generated Acoustic Signal Interaction with Surface Flaws on Rail Wheels

2005

Long- and short-range acoustic-signal interaction with surface-breaking cracks and geometric boundaries of the rail-wheel tread area are presented in this article. Ultrasonic signals are generated using a laser-line source of varying length and distance from a crack and are detected with a 1-MHz contact transducer to map the sound field behind the crack in the near, intermediate, and far fields of the insonified region. The factors that affect the behavior of a laser-generated surface acoustic wave propagating along the tread area of a rail wheel are discussed. A signal normalization method is proposed to help in sensing the presence of a crack from the transmitted signal unaffected by the …

DiffractionEngineeringbusiness.industryMechanical EngineeringAcousticsSurface acoustic waveAcoustic waveCondensed Matter PhysicsLine sourceCracks laser ultrasound line source rail wheel shadow zone sound fieldTransducerMechanics of MaterialsGeneral Materials ScienceUltrasonic sensorSurface acoustic wave sensorTreadbusiness
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Versuche zur Lichtbeugung an Ultraschall in Quarz

1967

Diffraction of a continuous laser beam (He-Ne) by standing ultrasonic waves of 260 Mcs/s in quartz has been investigated. Besides the principal maximum at exact Bragg-incidence, the variation of intensity of first order diffraction pattern with tilt angle shows up to 15 secondary maxima. The effective depth of sound field and the maximum variation of refractive index were determined by comparison with the theory ofBhatia andNoble.

DiffractionNuclear and High Energy PhysicsMaterials sciencebusiness.industryPhysics::OpticsEffective depthIntensity (physics)Tilt (optics)OpticsUltrasonic sensorMaximabusinessRefractive indexQuartzZeitschrift f�r Physik
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Advanced Ultrasonic Structural Monitoring of Waveguides

2008

Ultrasonic Guided Waves (UGWs) are a useful tool in those structural health monitoring applications that can benefit from built-in transduction, moderately large inspection ranges and high sensitivity to small flaws. This paper describes two methods, based on linear and nonlinear acoustics for structural damage detection based on UGWs. The linear method combine the advantages of UGW inspection with the outcomes of the Discrete Wavelet Transform (DWT) that is used for extracting defect-sensitive features that can be combined to perform a multivariate diagnosis of damage. In particular, the DWT is exploited to generate a set of relevant wavelet coefficients to construct a uni-dimensional or m…

Discrete wavelet transformDiscrete Wavelet Transform Feature Extraction Nonlinear Acoustics Ultrasonic Guided WaveMaterials scienceAcousticsSpectral densityNonlinear acousticsWaveletHarmonicsHarmonicElectronic engineeringUltrasonic sensorStructural health monitoringSettore ICAR/08 - Scienza Delle Costruzioni
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Ultrasonic Guided Waves-Based Monitoring of Rail Head: Laboratory and Field Tests

2010

Recent train accidents have reaffirmed the need for developing a rail defect detection system more effective than that currently used. One of the most promising techniques in rail inspection is the use of ultrasonic guided waves and noncontact probes. A rail inspection prototype based on these concepts and devoted to the automatic damage detection of defects in rail head is the focus of this paper. The prototype includes an algorithm based on wavelet transform and outlier analysis. The discrete wavelet transform is utilized to denoise ultrasonic signals and to generate a set of relevant damage sensitive data. These data are combined into a damage index vector fed to an unsupervised learning…

Discrete wavelet transformEngineeringArticle Subjectbusiness.industryReal-time computingWavelet transformWaveletRailheadlcsh:TA1-2040OutlierRail inspectionUltrasonic sensorSensitivity (control systems)businesslcsh:Engineering (General). Civil engineering (General)SimulationCivil and Structural EngineeringAdvances in Civil Engineering
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An unsupervised Learning Algorithm for Fatigue Crack Detection in Waveguides

2009

Ultrasonic guided waves (UGWs) are a useful tool in structural health monitoring (SHM) applications that can benefit from built-in transduction, moderately large inspection ranges, and high sensitivity to small flaws. This paper describes an SHM method based on UGWs and outlier analysis devoted to the detection and quantification of fatigue cracks in structural waveguides. The method combines the advantages of UGWs with the outcomes of the discrete wavelet transform (DWT) to extract defect-sensitive features aimed at performing a multivariate diagnosis of damage. In particular, the DWT is exploited to generate a set of relevant wavelet coefficients to construct a uni-dimensional or multi-di…

Discrete wavelet transformEngineeringGuided wave testingultrasonic guided wave damage index steel control ndt crackbusiness.industryAcousticsCondensed Matter PhysicsNovelty detectionAtomic and Molecular Physics and OpticsWaveletMechanics of MaterialsNondestructive testingSignal ProcessingOutlierForensic engineeringGeneral Materials ScienceUltrasonic sensorStructural health monitoringElectrical and Electronic EngineeringbusinessSettore ICAR/08 - Scienza Delle CostruzioniCivil and Structural Engineering
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Outlier analysis and principal component analysis to detect fatigue cracks in waveguides

2009

Ultrasonic Guided Waves (UGWs) are a useful tool in structural health monitoring (SHM) applications that can benefit from built-in transduction, moderately large inspection ranges and high sensitivity to small flaws. This paper describes a SHM method based on UGWs, discrete wavelet transform (DWT), outlier analysis and principal component analysis (PCA) able to detect and quantify the onset and propagation of fatigue cracks in structural waveguides. The method combines the advantages of guided wave signals processed through the DWT with the outcomes of selecting defectsensitive features to perform a multivariate diagnosis of damage. The framework presented in this paper is applied to the de…

Discrete wavelet transformMultivariate statisticsMultivariate analysisGuided wave testingComputer scienceAcousticsUltrasonic testingWavelet transformOutlier analysisprincipal component analysis fatigue cracks waveguidesPrincipal component analysisOutlierUltrasonic sensorStructural health monitoringSettore ICAR/08 - Scienza Delle Costruzioni
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