Search results for "deformation"

showing 10 items of 515 documents

Morphology and transport parameters of cold-rolled low-density polyethylene

1986

Abstract Sheets of low-density polyethylene were rolled at room temperature. Samples with two different degrees of rolling were obtained. The structural changes induced by the rolling treatments were investigated using scanning electron microscopy and by analyzing the transport properties. Results suggest that in the analyzed range of deformation, the rolling induces a domain structure as a consequence of a nonhomogeneous distribution of the deformation. At lower local deformation the initial morphology is still present, while at higher deformation clumps of folded chains oriented along the rolling directions are observable. The transport properties indicate that the rolling treatment reduc…

Materials scienceMorphology (linguistics)Polymers and PlasticsScanning electron microscopeMineralogyYoung's modulusGeneral ChemistryPolyethyleneDeformation (meteorology)Condensed Matter Physicslaw.inventionLow-density polyethylenesymbols.namesakechemistry.chemical_compoundchemistrylawMaterials ChemistrysymbolsElectron microscopeComposite materialFOIL methodJournal of Macromolecular Science, Part B
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Mechanics of deformation of single- and multi-wall carbon nanotubes

2004

Abstract An effective continuum/finite element (FE) approach for modeling the structure and the deformation of single- and multi-wall carbon nanotubes (CNTs) is presented. Individual tubes are modeled using shell elements, where a specific pairing of elastic properties and mechanical thickness of the tube wall is identified to enable successful modeling with shell theory. The incorporation and role of an initial internal distributed stress through the thickness of the wall, due to the cylindrical nature of the tube, are discussed. The effects of van der Waals forces, crucial in multi-wall nanotubes and in tube/tube or tube/substrate interactions, are simulated by the construction of special…

Materials scienceNanocompositeMechanical EngineeringShell (structure)Mechanical properties of carbon nanotubesBendingMechanicsCarbon nanotubeCondensed Matter Physicslaw.inventionStress (mechanics)symbols.namesakeMechanics of MaterialslawsymbolsDeformation (engineering)Composite materialvan der Waals forceJournal of the Mechanics and Physics of Solids
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Stress relaxation of a polyisobutylene under large strains

1980

Stress relaxation data after single and double elongational strain “steps” were collected on a commercial polyisobutylene, Oppanol B 50. Analogously to other cases a separability of deformation and time effects was observed over an extended time region for the relaxation after single “steps”. Moreover, by comparing the results after double with those after single steps, it was noted that any rheological equation of integral type having a rigorously constant memory function is not able to describe accurately the full body of results presented here. On the other hand the data were favorably compared with the predictions of a model proposed earlier.

Materials scienceNuclear magnetic resonanceRheologyStrain (chemistry)Stress relaxationRelaxation (physics)General Materials ScienceMechanicsFunction (mathematics)Deformation (engineering)Extended timeCondensed Matter PhysicsConstant (mathematics)Rheologica Acta
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Deformation analysis of ATHENA test filters made of plastic thin films supported by a mesh under differential static pressure

2019

Within ESA Cosmic Vision 2015-2025 Science Program, ATHENA was selected to be a Large-class high energy astrophysics space mission. The observatory will be equipped with two interchangeable focal plane detectors named X-Ray Integral Field Unit (X-IFU) and Wide Field Imager (WFI). In order to optimally exploit the detector sensitivity, X-ray transparent filters are required. Such filters need to be extremely thin to maximize the X-ray transparency, that is, no more than a few tens of nm, still they must be able to sustain the severe stresses experienced during launch. Partially representative test filters were made with a thin polypropylene film, coated with Ti, and supported by a thin highl…

Materials scienceOptical Profilometry Stress Analysis FEA XRay ATHENA X-IFUNumerical analysisDetectorMechanical engineeringStatic pressureDeformation (meteorology)01 natural sciencesFinite element method010309 opticsSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineFilter (large eddy simulation)Settore FIS/05 - Astronomia E AstrofisicaCardinal point0103 physical sciencesThin film010306 general physics2019 IEEE 5th International Workshop on Metrology for AeroSpace (MetroAeroSpace)
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Correlation analysis of vibration modes in physical vapour deposited Bi 2 Se 3 thin films probed by the Raman mapping technique

2021

In this work, the Raman spectroscopy mapping technique is used for the analysis of mechanical strain in Bi2Se3 thin films of various (3-400 nm) thicknesses synthesized by physical vapour deposition on amorphous quartz and single-layer graphene substrates. The evaluation of strain effects is based on the correlation analysis of in-plane (E2g) and out-of-plane (A21g) Raman mode positions. For Bi2Se3 films deposited on quartz, experimental datapoints are scattered along the line with a slope of similar to 0.85, related to the distribution of hydrostatic strain. In contrast to quartz/Bi2Se3 samples, for graphene/Bi2Se3 heterostructures with the same thicknesses, an additional negative slope of …

Materials scienceOther Physics TopicsPhononBioengineering02 engineering and technologySubstrate (electronics)01 natural scienceslaw.inventionsymbols.namesakelaw0103 physical sciencesOther Materials EngineeringGeneral Materials ScienceThin filmComposite material010306 general physicsQuartzGrapheneGeneral EngineeringGeneral ChemistryCondensed Matter Physics021001 nanoscience & nanotechnologyAtomic and Molecular Physics and OpticsAmorphous solidsymbolsDeformation (engineering)0210 nano-technologyRaman spectroscopyNanoscale Advances
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Powder metallurgy processing and deformation characteristics of bulk multimodal nickel

2014

cited By 7; International audience; Spark plasma sintering was used to process bulk nickel samples from a blend of three powder types. The resulting multimodal microstructure was made of coarse (average size ∼ 135 μm) spherical microcrystalline entities (the core) surrounded by a fine-grained matrix (average grain size ∼ 1.5 μm) or a thick rim (the shell) distinguishable from the matrix. Tensile tests revealed yield strength of ∼ 470 MPa that was accompanied by limited ductility (∼ 2.8% plastic strain). Microstructure observation after testing showed debonding at interfaces between the matrix and the coarse entities, but in many instances, shallow dimples within the rim were observed indica…

Materials sciencePlasticityEBSDFlow stressDeformation CharacteristicsNickelPowder metallurgyPowder metallurgyGeneral Materials ScienceIn-situ TEMMicrostructureMicrostructure observationCrack tips[PHYS]Physics [physics][ PHYS ] Physics [physics]Deformation mechanismMechanical EngineeringMetallurgySpark plasma sinteringNickel powder metallurgyCondensed Matter PhysicsMicrostructureGrain sizeDeformationIn-situ transmission electron microscopiesDeformation mechanismMechanics of MaterialsMulti-modalGrain boundariesGrain boundaryPowder metallurgy processingDeformation (engineering)DislocationTensile testingTransmission electron microscopy
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Influence of molecular weight on the creep behavior of undiluted polyisobutylenes

1979

The elongational behavior in constant force experiments has been considered for three samples of commercial polyisobutylene. The results compare favorably with the predictions of two existing non-linear theories as long as the samples deform homogeneously. Some qualitative observations have been made with reference to the “failure point”, i.e., the point where a non-homogeneous deformation begins.

Materials sciencePolymers and PlasticsCreepMaterials ChemistryForensic engineeringPoint (geometry)General ChemistryMechanicsDeformation (meteorology)Constant forcePolymer Engineering and Science
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Static and dynamic elasticity of some thermotropic liquid-crystalline copolyesters

1997

Two series of thermotropic liquid crystalline copolyesters were studied in static and dynamic tensile deformation. Static loading generally does not lead to any peculiar phenomena: the stress-strain diagrams are linear or convex, except one copolyester fibre, the stress-strain diagram of which is concave at high temperatures. On the contrary, in dynamic loading the elasticity modulus increased during deformation for all the samples investigated. So it can be assumed that formation of a more rigid and stable structure takes place due to the dynamic deformation.

Materials sciencePolymers and PlasticsGeneral MathematicsCondensed Matter PhysicsCopolyesterThermotropic crystalBiomaterialsSynthetic fiberMechanics of MaterialsDynamic loadingSolid mechanicsUltimate tensile strengthCeramics and CompositesComposite materialDeformation (engineering)Elastic modulusMechanics of Composite Materials
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Creep and damage accumulation in orthotropic composites under cyclic loading

1998

Experimental results and theoretical prediction of the response of glassfiber-reinforced polyester under quasi-static, static (creep), and cyclic (fatigue) loading are presented. The nonlinear strain component at static loading and the strain amplitude rate at cyclic off-axis loading of an orthotropic composite are shown to follow the associated flow rule with a single-parameter quadratic potential function. The influence of fatigue damage on deformation is considerable due to the reduction in the elastic modulus of the composite and is apparently negligible with respect to its effect on the parameters of the creep kernel.

Materials sciencePolymers and PlasticsGeneral MathematicsGlass fiberComposite numberCondensed Matter PhysicsOrthotropic materialFatigue limitBiomaterialsCreepMechanics of MaterialsSolid mechanicsCeramics and CompositesDeformation (engineering)Composite materialElastic modulusMechanics of Composite Materials
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Size effects in micro- and nanoscale indentation

2006

Abstract The indentation size effect (ISE) has been studied in single crystals, polycrystals and amorphous solids using the Vickers microhardness test. The ISE is clearly present in single crystals but is absent in fine-grained polycrystals. A size-dependent hardness for amorphous solids is observed only in the sub-micrometre surface layer. The behaviour of the ISE in single crystals for micro- and nanoindentation is compared. Estimates of the surface hardness are made by the extrapolation of the experimental hardness–indentation depth curves. The extrapolated hardness in the surface region reaches values corresponding to the theoretical shear strength. The results confirm the multifarious …

Materials sciencePolymers and PlasticsMetals and AlloysWork hardeningNanoindentationCondensed Matter::Disordered Systems and Neural NetworksHardnessIndentation hardnessElectronic Optical and Magnetic MaterialsAmorphous solidCondensed Matter::Materials ScienceCrystallographyIndentationCeramics and CompositesSurface layerDeformation (engineering)Composite materialActa Materialia
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