Search results for "Young's modulus"

showing 10 items of 74 documents

Theoretical and Experimental Research on Mechanical Behavior of Layered Composites Laminates

2014

The aim of the research of the experiment was to determine the mechanical characteristics of the composite layered material. There has been two types of experimental tests i.e. test for determining the tensile modulus of elasticity of the material, the maximum voltage and the elongation at break of the material. The second type of test is the flexural test was intended to determine the maximum load that the breaking is produced by bending.

Materials sciencebusiness.industryThree point flexural testComposite numberYoung's modulusGeneral MedicineStructural engineeringBendingElasticity (physics)Finite element methodsymbols.namesakeFlexural strengthsymbolsComposite materialElongationbusinessApplied Mechanics and Materials
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Investigation on fracture of epoxy-filled composites by acoustic emission

2016

Acoustic emission (AE) technique is widely used to monitor failure processes in composite materials includ-ing development of cracks and plastic deformations within the polymer matrix, fracture and debonding of inclusions, etc. In this study, the AE technique was applied investigating failure character of epoxy polymers with different content of nanofiller – fine polyethersulfone (PES) powder. Variation of material properties of the epoxy with 0, 5%, 7.5%, 10%, and 12.5% concentration (by weight) of the PES was assessed experimentally. Correlation between the PES content and the modulus of elasticity was found negligible. The same was characteristic for the tensile strength. Whereas, such a…

Materials scienceepoxy-filled compositeStrategy and Management020101 civil engineeringYoung's modulus02 engineering and technology0201 civil engineeringsymbols.namesakeFracture toughnessUltimate tensile strengthComposite materialCivil and Structural EngineeringTensile testingBuilding constructiontensile testEpoxy021001 nanoscience & nanotechnologyAcoustic emissionvisual_artsymbolsvisual_art.visual_art_mediumFracture (geology)Deformation (engineering)damage accumulation0210 nano-technologyacoustic emissionTH1-9745Journal of Civil Engineering and Management
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Tribological properties of commercial optical disks estimated from nanoindentation and scratch techniques

2007

Abstract The structure of optical disks is a complex superposition of several layers with different objectives. The most external layer is usually designed with a protective purpose. When the scratch of the substrate occurs, the optical properties of the device decrease inducing a deficiency in the storage or access of data. Nowadays, the latest commercial optical disks exhibit protective coatings made of polymeric materials (copolymers, and polymeric matrix composite materials). The efficiency of these layers depends on a combination of several mechanical properties like hardness and Young's modulus. In this work, a compositional and mechanical study was carried out on four commercial opti…

Mechanical loadMaterials scienceModulusYoung's modulusSurfaces and InterfacesTribologyNanoindentationCondensed Matter PhysicsIndentation hardnessSurfaces Coatings and Filmssymbols.namesakeMechanics of MaterialsScratchIndentationMaterials ChemistrysymbolsComposite materialcomputercomputer.programming_languageWear
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The impact of ocean acidification and warming on the skeletal mechanical properties of the sea urchin Paracentrotus lividus from laboratory and field…

2016

Increased atmospheric CO2 concentration is leading to changes in the carbonate chemistry and the temperature of the ocean. The impact of these processes on marine organisms will depend on their ability to cope with those changes, particularly the maintenance of calcium carbonate structures. Both a laboratory experiment (long-term exposure to decreased pH and increased temperature) and collections of individuals from natural environments characterized by low pH levels (individuals from intertidal pools and around a CO2 seep) were here coupled to comprehensively study the impact of near-future conditions of pH and temperature on the mechanical properties of the skeleton of the euechinoid sea …

Ocean Acidification International Coordination Centre (OA-ICC)IdentificationSalinityTemperateinorganicAlkalinityAreaExperimentTemperature waterCarbon inorganic dissolvedCalculated using seacarb after Nisumaa et al 2010Aragonite saturation stateMesocosm or benthocosmAlkalinity totaltotalYoung s moduluspHNorth AtlanticTemperatureProportiondissolvedCarbonate ionLaboratory experimentPartial pressure of carbon dioxide (water) at sea surface temperature (wet air)Earth System ResearchField observationThicknessEchinodermataCalcite saturation stateLengthwaterYoung's modulusGrowth MorphologyBenthosReplicateDiameterHardnessOther studied parameter or processOcean Acidification International Coordination Centre OA ICCAnimaliaBicarbonate ionCalculated using seacarb after Nisumaa et al. (2010)ForceSpeciesHeightTest setCarbonate system computation flagFugacity of carbon dioxide (water) at sea surface temperature (wet air)CarbonTreatmentPartial pressure of carbon dioxide water at sea surface temperature wet airCarbon dioxideParacentrotus lividusGrowth/MorphologySingle speciesBenthic animalsFugacity of carbon dioxide water at sea surface temperature wet airCoast and continental shelfSecond moment of area
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On the Path and Area J<sub>x1</sub>-Integral Components and their Relationship to the Out-of-Plane Constraint in Elastic Cracked Plates

2009

In this paper, the path and area components of the Jx1-integral, JP and JA, in three dimensional elastic cracked plates under mode-I loading are investigated aiming at relating them to the out-of-plane constraint conditions resulting from different specimen thicknesses. It is concluded that the JP and JA components of the Jx1-integral vary in the region where the out-of-plane constraint extends. Sufficiently far from the crack front, these integrals tend to stabilize, indicating that the thickness constraint vanishes and that a 2D-like stress and strain fields have been reached. A pure plane strain condition is only attained when the specimen thickness is very large when compared to the in-…

Physicsbusiness.industryMechanical EngineeringStress–strain curveMathematical analysisMode (statistics)Neighbourhood (graph theory)Young's modulusStructural engineeringConstraint (information theory)symbols.namesakeMechanics of MaterialsSimple (abstract algebra)Path (graph theory)symbolsGeneral Materials SciencebusinessPlane stressKey Engineering Materials
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Elasticity of Poissonian fiber networks

2000

An effective-medium model is introduced for the elasticity of two-dimensional random fiber networks. These networks are commonly used as basic models of heterogeneous fibrous structures such as paper. Using the exact Poissonian statistics to describe the microscopic geometry of the network, the tensile modulus can be expressed by a single-parameter function. This parameter depends on the network density and fiber dimensions, which relate the macroscopic modulus to the relative importance of axial and bending deformations of the fibers. The model agrees well with simulation results and experimental findings. We also discuss the possible generalizations of the model. Peer reviewed

Physicssymbols.namesakePhysicssymbolsModulusYoung's modulusStatistical physicseffective-medium modelselastic propertiesElasticity (economics)Network densityinhomogeneous materials
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The elastic body model: a pedagogical approach integrating real time measurements and modelling activities

2007

In this paper, we describe a pedagogical approach to elastic body movement based on measurements of the contact times between a metallic rod and small bodies colliding with it and on modelling of the experimental results by using a microcomputer-based laboratory and simulation tools. The experiments and modelling activities have been built in the context of the laboratory of mechanical wave propagation of the two-year graduate teacher education programme of Palermo’s University. Some considerations about observed modifications in trainee teachers’ attitudes in utilizing experiments and modelling are discussed.

PhysicsvelocityEngineering drawingScience instructionTeaching methodYoung's modulusGeneral Physics and AstronomyContext (language use)Body movementTeacher educationMotion (physics)MicrocomputerComputingMilieux_COMPUTERSANDEDUCATIONacousticsEuropean Journal of Physics
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DEGRADATION OF MATER-BI /WOOD FLOUR BIOCOMPOSITES IN ACTIVE SEWAGE SLUDGE

2009

The mechanical properties of Mater-Bi® are, in general, not adequate for certain applications and the addition of a filler is therefore necessary. Among the different fillers, natural fibres are particularly interesting because they potentially allow improving the performance of the material without compromising its biodegradability. In order to improve the basic mechanical properties of a Mater-Bi grade and to obtain a new, fully biodegradable material, wood flour based composites were prepared by different processing methods. To simulate actual and not laboratory bacterial attack on the prepared materials, in this work we studied the biodegradation of the composites in a real active sewag…

Polymer-matrix composites (PMCs)Materials sciencePolymers and PlasticsExtrusionEnvironmental DegradationWood flourYoung's modulusBiodegradationCondensed Matter PhysicsInjection Mouldingsymbols.namesakeActivated sludgeMechanics of MaterialsMaterials ChemistrySurface roughnesssymbolsExtrusionBiocompositeComposite materialElastic modulus
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Characterization of blends of polypropylene with a semirigid liquid-crystal copolyester

1991

Abstract Blends with a liquid-crystal polymers (LCP) as one component show, in general, very interesting properties. Reduction of shear viscosity and improvement of mechanical properties are very remarkable. High melting temperatures and high costs of the LCP limit the use of these blends. A new class of thermotropic LCPs with flexible spaces, with relatively low melting temperatures, can overcome the first problem. In this work, rheological and mechanical properties of blends of polypropylene with low contents of this LCP are presented. Torque during extrusion and viscosity decrease with LCP content. Elastic modulus is remarkably increased when the LCP phase is oriented.

PolypropyleneMaterials sciencePolymers and PlasticsOrganic ChemistryGeneral Physics and AstronomyYoung's modulusThermotropic crystalchemistry.chemical_compoundViscositysymbols.namesakeRheologychemistryLiquid crystalMaterials ChemistrysymbolsPolymer blendComposite materialElastic modulusEuropean Polymer Journal
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Modeling elastic properties of short flax fiber-reinforced composites by orientation averaging

2010

Abstract Natural fibers of plant origin, used as reinforcement in polymer matrix composite materials, exhibit highly anisotropic elastic properties due to their complex internal structure. Mechanical properties can be evaluated not only by tests but also by mechanical models reflecting the principal morphological features of fibers. Such a FEM model is applied to estimate the elastic properties of a unit cell of a short-fiber-reinforced composite, an elementary flax fiber embedded in a polymer matrix. Orientation averaging approach is used for prediction of the stiffness of short flax fiber reinforced polymer matrix composite. The numerical estimates of Young’s modulus are compared to the t…

Polypropylenechemistry.chemical_classificationMaterials scienceGeneral Computer ScienceComposite numberGeneral Physics and AstronomyModulusStiffnessYoung's modulusGeneral ChemistryPolymerFinite element methodComputational Mathematicssymbols.namesakechemistry.chemical_compoundchemistryMechanics of MaterialssymbolsmedicineGeneral Materials ScienceComposite materialmedicine.symptomAnisotropyComputational Materials Science
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