Search results for "Mechanical Engineering & Transports"

showing 10 items of 408 documents

Fractional model of concrete hereditary viscoelastic behaviour

2016

The evaluation of creep effects in concrete structures is addressed in the literature using different predictive models, supplied by specific codes, and applying the concepts of linear viscoelastic theory with ageing. The expressions used in the literature are mainly based on exponential laws, which are introduced in the integral expression of the Boltzmann principle; this approach leads to the need of finding approximated numerical solutions of the viscoelastic response. In this study, the hereditary fractional viscoelastic model is applied to concrete elements, underlining the convenience of using creep or relaxation functions expressed by power laws. The full reciprocal character of cree…

RelaxationDiscretizationLaplace transformMechanical EngineeringMathematical analysis02 engineering and technologyConvolution integralsCreep021001 nanoscience & nanotechnologyPower lawViscoelasticityExponential functionMatrix (mathematics)Linear viscoelasticity020303 mechanical engineering & transports0203 mechanical engineeringCreepFractional operatorsRelaxation (approximation)0210 nano-technologyMathematicsConcrete
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Dependence between aging treatments and residual stresses on composite laminate

2006

International audience; The objective of this paper is to study the influence of residual stresses due to fabrication conditions on the thermomechanical behavior of carbon/epoxy laminate structures (cross ply). These studied laminates have undergone various cycles of thermal aging. The addition of a post-cure cycle after the end of the initial cycle makes it possible to reduce the residual stresses level. The incremental hole-drilling method is used to measure the residual strain in the laminates. These measured strains and the numerical calibration coefficients obtained by the finite element method allow to calculating the residual stress distribution in composite depth. The obtained resul…

Residual StressAgingMaterials scienceFabrication[SPI] Engineering Sciences [physics]Composite numberComposite02 engineering and technology[SPI]Engineering Sciences [physics]0203 mechanical engineeringResidual stress[SPI.MECA.MEMA]Engineering Sciences [physics]/Mechanics [physics.med-ph]/Mechanics of materials [physics.class-ph]CalibrationGeneral Materials ScienceComposite materialComputingMilieux_MISCELLANEOUSHole drilling methodMechanical EngineeringEpoxyHole-Drilling Method021001 nanoscience & nanotechnologyCondensed Matter PhysicsFinite element method020303 mechanical engineering & transportsCuring CycleMechanics of Materialsvisual_artvisual_art.visual_art_medium0210 nano-technologyReduction (mathematics)
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Process parameters influence in additive manufacturing

2016

Additive manufacturing is a rapidly expanding technology. It allows the creation of very complex 3D objects by adding layers of material, in spite of the traditional production systems based on the removal of material. The development of additive technology has produced initially a generation of additive manufacturing techniques restricted to industrial applications, but their extraordinary degree of innovation has allowed the spreading of household systems. Nowadays, the most common domestic systems produce 3D parts through a fused deposition modeling process. Such systems have low productivity and make, usually, objects with no high accuracy and with unreliable mechanical properties. Thes…

Reverse engineering0209 industrial biotechnologyComputer scienceAdditive manufacturingmedia_common.quotation_subjectPoint cloud3D printingCAD02 engineering and technologycomputer.software_genrelaw.inventionSet (abstract data type)020901 industrial engineering & automation0203 mechanical engineeringlawQuality (business)Process engineeringReverse engineeringmedia_commonFused deposition modelingbusiness.industryProcess parameterProcess (computing)3D printing020303 mechanical engineering & transportsbusinesscomputer
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On the moving load problem in beam structures equipped with tuned mass dampers

2017

This paper proposes an original and efficient approach to the moving load problem on Euler–Bernoulli beams, with Kelvin–Voigt viscoelastic translational supports and rotational joints, and in addition, equipped with Kelvin–Voigt viscoelastic tuned mass dampers (TMDs). While supports are taken as representative of external devices such as grounded dampers or in-span supports with flexibility and damping, the rotational joints may model rotational dampers or connections with flexibility and damping arising from imperfections or damage. The theory of generalised functions is used to treat the discontinuities of the response variables, which involves deriving exact complex eigenvalues and eigen…

Rotational joint02 engineering and technologyMoving load01 natural sciencesViscoelasticityDamper0203 mechanical engineeringDeflection (engineering)Control theoryTuned mass damper0103 physical sciencesTime domain010301 acousticsPhysicsbusiness.industryMechanical EngineeringCharacteristic equationMoving loadStructural engineeringCondensed Matter PhysicsTuned mass damper020303 mechanical engineering & transportsMechanics of MaterialsEuler–Bernoulli beamTranslational supportbusinessBeam (structure)Meccanica
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On the behavior of a three-dimensional fractional viscoelastic constitutive model

2016

In this paper a three-dimensional isotropic fractional viscoelastic model is examined. It is shown that if different time scales for the volumetric and deviatoric components are assumed, the Poisson ratio is time varying function; in particular viscoelastic Poisson ratio may be obtained both increasing and decreasing with time. Moreover, it is shown that, from a theoretical point of view, one-dimensional fractional constitutive laws for normal stress and strain components are not correct to fit uniaxial experimental test, unless the time scale of deviatoric and volumetric are equal. Finally, the model is proved to satisfy correspondence principles also for the viscoelastic Poisson’s ratio a…

Scale (ratio)Mechanical EngineeringConstitutive equationMathematical analysisIsotropy02 engineering and technologyFunction (mathematics)021001 nanoscience & nanotechnologyCondensed Matter PhysicsPoisson distributionViscoelasticityPoisson's ratioCondensed Matter::Soft Condensed Mattersymbols.namesake020303 mechanical engineering & transports0203 mechanical engineeringMechanics of MaterialsConsistency (statistics)symbolsFractional viscoelasticity 3D constitutive models Creep Relaxation Viscoelastic Poisson ratio0210 nano-technologyMathematicsMeccanica
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Functional design of power-split CVTs: An uncoupled hierarchical optimized model

2017

Abstract This paper provides a new model for the preliminary design of compound power-split CVTs. Unlike the existing models, the presented method allows the engineers to prioritize functionality and efficiency of the transmission, while delaying the choice of the involved gear sets’ layout as long as possible. The design approach follows a specific priority order, and each step deals with one particular issue, without mutual interference. A smart design-chart eases the assessment and the comparison of the only eligible alternatives, and eventually leads to a final feasible constructive scheme, which can be an excellent concept for further optimization and implementation. Moreover, the mode…

Scheme (programming language)0209 industrial biotechnologyEngineeringMathematical optimizationComputationPower-split CVTBioengineering02 engineering and technologySystem of linear equationsInterference (wave propagation)Constructive020901 industrial engineering & automation0203 mechanical engineeringFunctional designMechanics of MaterialContinuously variable transmissionConfiguration designSimulationcomputer.programming_languagee-CVTbusiness.industryConfiguration designMechanical EngineeringFunctional designComputer Science Applications1707 Computer Vision and Pattern RecognitionSettore ING-IND/13 - Meccanica Applicata Alle MacchineHybridComputer Science Applications020303 mechanical engineering & transportsTransmission (telecommunications)Mechanics of Materialsbusinesscomputer
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A closed-form solution for natural frequencies of thin-walled cylinders with clamped edges

2016

Abstract This paper presents an approximate closed-form solution for the free-vibration problem of thin-walled clamped–clamped cylinders. The used indefinite equations of motion are classic. They derive from Reissner׳s version of Love׳s theory, properly modified with Donnell׳s assumptions, but an innovative approach has been used to find the equations of natural frequencies, based on a solving technique similar to Rayleigh׳s method, on the Hamilton׳s principle and on a proper constructions of the eigenfuctions. Thanks to the used approach, given the geometric and mechanical characteristics of the cylinder, the model provides the natural frequencies via a sequence of explicit algebraic equat…

SequenceMechanical EngineeringEquations of motionNatural frequency02 engineering and technology021001 nanoscience & nanotechnologyCondensed Matter PhysicsSettore ING-IND/13 - Meccanica Applicata Alle MacchineCircular cylindrical shell Natural frequencies Free vibrations Hamilton's principleFinite element methodsymbols.namesakeAlgebraic equation020303 mechanical engineering & transports0203 mechanical engineeringMechanics of MaterialsNormal modeCalculussymbolsApplied mathematicsGeneral Materials ScienceHamilton's principleClosed-form expression0210 nano-technologyCivil and Structural EngineeringMathematicsInternational Journal of Mechanical Sciences
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A single-domain Ritz approach for buckling and post-buckling analysis of cracked plates

2019

Abstract A Ritz approach for the analysis of buckling and post-buckling of plates with through-the-thickness cracks is presented. The plate behavior is described by the first order shear deformation theory and von Karman’s geometric nonlinearity. The admissible functions used in the displacements approximation are series of regular orthogonal polynomial supplemented with special functions able to decribe the dicontinuity across the crack and the singularity at the crack tips; boundary functions are used to fullfill the homogeneous essential boundary conditions. Convergence studies and analysis results are presented for buckling and post-buckling of plates with a central through-the-thicknes…

Series (mathematics)Applied MathematicsMechanical EngineeringMathematical analysisDegrees of freedom (statistics)Boundary (topology)02 engineering and technology021001 nanoscience & nanotechnologyCondensed Matter PhysicsPlate buckling Plate post-buckling Ritz method First order shear deformation theoryNonlinear system020303 mechanical engineering & transportsSingularity0203 mechanical engineeringBucklingMechanics of MaterialsSpecial functionsModeling and SimulationGeneral Materials ScienceBoundary value problemSettore ING-IND/04 - Costruzioni E Strutture Aerospaziali0210 nano-technologyMathematicsInternational Journal of Solids and Structures
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Vibration-based identification of mechanical properties of orthotropic arbitrarily shaped plates: Numerical and experimental assessment

2018

Abstract An innovative procedure is introduced for the identification of the mechanical parameters of orthotropic plates of arbitrary shape, under various boundary conditions, based on vibration data. The method employs a combination of a convenient Rayleigh-Ritz approach and Particle-Swarm Optimization to estimate elastic constants of the orthotropic material in a straightforward manner, without requiring computationally demanding iterative Finite Element analyses. Specifically, the pb-2 Rayleigh-Ritz procedure is extended and applied to deal with orthotropic plates, simplifying the approach to more easily treat generic plate shapes, taking advantage of the Green's theorem. The method is t…

Settore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciMaterials sciencePb-2 Rayleigh-Ritz approachContext (language use)Ceramics and Composite02 engineering and technologyOrthotropic materialIndustrial and Manufacturing Engineering0203 mechanical engineeringVibration testMaterial parameter identificationMechanics of MaterialBoundary value problemParticle-swarm optimizationComposite materialReliability (statistics)business.industryExperimental analysiMechanical EngineeringParticle swarm optimizationExperimental dataStructural engineering021001 nanoscience & nanotechnologyFinite element methodVibration020303 mechanical engineering & transportsMechanics of MaterialsCeramics and Composites0210 nano-technologybusinessSettore ICAR/08 - Scienza Delle Costruzioni
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Dynamic response of equivalent orthotropic plate model for stiffened plate: numerical-experimental assessment

2017

Abstract Over the last two decades, homogenization-based modeling techniques have attracted considerable attention. In fact, through these methods, structures such as corrugated or stiffened plates, commonly referred to as structurally orthotropic plates, can be approximately studied as equivalent flat plates with orthotropic behavior. Specifically, these homogenization techniques allow for the direct determination of the equivalent flexural and torsional rigidities which appear in the governing equation for the deflection of the equivalent orthotropic plate. It is worth noting that, the determined equivalent material properties retain the dependence on the geometric parameters of the origi…

Settore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciMaterials sciencebusiness.industryExperimental analysiNumerical analysis020101 civil engineering02 engineering and technologyGeneral MedicineStructural engineeringOrthotropic materialHomogenization (chemistry)Finite element method0201 civil engineering020303 mechanical engineering & transportsStiffened plates0203 mechanical engineeringFlexural strengthDeflection (engineering)EquidistantEquivalent orthotropic modelSettore ICAR/08 - Scienza Delle CostruzioniMaterial propertiesbusinessProcedia Engineering
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