Search results for "spring model"

showing 4 items of 4 documents

Active repair technology applied to delaminated composite structures

2009

The main target of the present paper is represented by the fracture mechanics charac-terization of delaminated composite structures actively repaired through piezoelectric patches. A boundary element code, formulated for anisotropic piezoelectric solids, including, as limiting case, the applicability to linear elastic anisotropic materials has been then imple-mented. The modeling of the delaminated composite structures as well as of the assembled structures, made of the damaged components and the patches, has been achieved through the multidomain technique. Moreover, to take into account for the adhesive layer between the host structures and the piezoelectric patches, a "spring-model" has b…

Active Repair Technology Piezoelectric Patch Boundary Element Method Multidomain Technique Spring ModelSettore ICAR/04 - Strade Ferrovie Ed Aeroporti
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Numerical Analysis of Piezoelectric Active Repair in the Presence of Frictional Contact Conditions

2013

The increasing development of smart materials, such as piezoelectric and shape memory alloys, has opened new opportunities for improving repair techniques. Particularly, active repairs, based on the converse piezoelectric effect, can increase the life of a structure by reducing the crack opening. A deep characterization of the electromechanical behavior of delaminated composite structures, actively repaired by piezoelectric patches, can be achieved by considering the adhesive layer between the host structure and the repair and by taking into account the frictional contact between the crack surfaces. In this paper, Boundary Element (BE) analyses performed on delaminated composite structures …

EngineeringComposite numberlcsh:Chemical technologySmart materialBiochemistryArticleAnalytical Chemistryboundary element methodmedicinelcsh:TP1-1185Electrical and Electronic EngineeringSettore ING-IND/04 - Costruzioni E Strutture AerospazialiInstrumentationBoundary element methodbusiness.industryDelaminationStiffnessFracture mechanicspiezoelectric actuatorStructural engineeringShape-memory alloyfrictional contactPiezoelectricityAtomic and Molecular Physics and Opticsactive repairspring modelmedicine.symptombusinessSensors
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An explicit mechanical interpretation of Eringen non-local elasticity by means of fractional calculus

2009

If the attenuation function of strain is expressed as a power law, the formalism of fractional calculus may be used to handle Eringen non-local elastic model. Aim of the present paper is to provide a mechanical interpretation to this non-local fractional elastic model by showing that it is equivalent to a discrete, point-spring model. A one-dimensional geometry is considered; static, kinematic and constitutive equations as well as the proper boundary conditions are derived and discussed.

fractional calculuNon-local elasticitypoint-spring modelsSettore ICAR/08 - Scienza Delle Costruzioni
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Automatic detection of lung nodules in CT datasets based on stable 3D mass–spring models

2012

We propose a computer-aided detection (CAD) system which can detect small-sized (from 3 mm) pulmonary nodules in spiral CT scans. A pulmonary nodule is a small lesion in the lungs, round-shaped (parenchymal nodule) or worm-shaped (juxtapleural nodule). Both kinds of lesions have a radio-density greater than lung parenchyma, thus appearing white on the images. Lung nodules might indicate a lung cancer and their early stage detection arguably improves the patient survival rate. CT is considered to be the most accurate imaging modality for nodule detection. However, the large amount of data per examination makes the full analysis difficult, leading to omission of nodules by the radiologist. We…

medicine.medical_specialtyLung NeoplasmsDatabases FactualHealth InformaticsCADModels BiologicalSensitivity and SpecificityImaging Three-DimensionalSegmentationLung nodulemedicineFalse positive paradoxSegmentation; Lung nodules; Active contours models;Computer tomography (CT); Mass–spring models; Spline curves; Image featuresHumansSegmentationDiagnosis Computer-AssistedStage (cooking)Lung cancerComputer tomography (CT)business.industryNodule (medicine)Image featuresSpline curvemedicine.diseaseSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)Computer Science ApplicationsRegion growingMass–spring modelRadiologyTomographymedicine.symptombusinessTomography Spiral ComputedAlgorithmsActive contours model
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