Search results for "composites"

showing 10 items of 1905 documents

Effect of the loading rate on ultimate strength of composites. Application: Pressure vessel slow burst test

2013

International audience; The strength of unidirectional elastic fibre composites is shown to depend on the loading rate as the viscoelastic nature of the matrix results in a fall in breaking load as the rate is reduced. The simulation of the accumulation of fibre breaks leading to failure, takes into account all physical phenomena involved fibre failure, including the stochastic nature of fibre strength, stress transfer through the matrix between reinforcements, interfacial debonding and the viscoelastic nature of the matrix. The kinetics of composite failure are seen to involve the initial formation of random fibre breaks which at higher loads coalesce into clusters of broken fibres. The ra…

Materials scienceSpeed effectPressure vessels[ SPI.MAT ] Engineering Sciences [physics]/MaterialsComposite numberMicromechanicsFibre break02 engineering and technology021001 nanoscience & nanotechnologyPressure vesselViscoelasticity[SPI.MAT]Engineering Sciences [physics]/MaterialsStress (mechanics)Matrix (mathematics)Mathematics::Algebraic Geometry020303 mechanical engineering & transports0203 mechanical engineeringUltimate tensile strengthCeramics and CompositesLoading rateMicromechanicsComposite material0210 nano-technologyCivil and Structural EngineeringComposite Structures
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Geometry and stacking sequence effect on composite spinnaker pole’s stiffness: experimental and numerical analysis

2006

Composite materials are widely employed in sailing sports, a possible application is for the mast pole or other sail poles. In the paper the attention is focused on the spinnaker poles mechanical performances; in particular the focus is on axial and ring compressive properties of three different carbon fibre/epoxy resin spinnaker poles, to investigate both the diameter and stacking sequence effect on the mechanical performance of the structure. Starting from the stacking sequence used in the production of a particular spinnaker pole, the effect of a lamina at 0- in the middle of wall thickness is investigated with the purpose to obtain a more stiff structure. Moreover to test the proposed s…

Materials scienceSpiNNakerbusiness.industryNumerical analysisComposite numberStackingStiffnessGeometryStructural engineeringEpoxyFinite element methodSoftwareSettore ING-IND/22 - Scienza E Tecnologia Dei Materialivisual_artCeramics and Compositesmedicinevisual_art.visual_art_mediumspinnaker pole stacking sequence composite material FEMmedicine.symptomComposite materialbusiness
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Crystallization and microstructural development of nickel-containing aluminosilicate glasses with cordierite stoichiometry

2001

Abstract The crystallization behaviour of two glasses with chemical compositions MAl2O4/SiO2=1/2.5, being MNi and equimolar mixtures of Mg and Ni, was investigated. Glasses were prepared by cooling samples melted at 1650 °C. During thermal treatment over the range of temperature up to 1200 °C both glasses were first crystallized to form a β-quartz solid solution, then transformed to α-cordierite or spinel depending on the amount of nickel. The temperatures of both the crystallization of β-quartz solid solution and its further transformation were also dependent on the nominal amount of nickel. Lower temperatures were found for glasses with a large amount of nickel. UV–Vis diffuse reflectanc…

Materials scienceSpinelAnalytical chemistryMineralogychemistry.chemical_elementCordieriteThermal treatmentengineering.materialCondensed Matter PhysicsMicrostructureElectronic Optical and Magnetic Materialslaw.inventionNickelchemistrylawAluminosilicateMaterials ChemistryCeramics and CompositesengineeringCrystallizationSolid solutionJournal of Non-Crystalline Solids
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Effect of thermal treatment on the structural evolution of 3:2 and 2:1 mullite monophasic gels

2005

Abstract Single phase mullite gels with composition 3Al2O3 · 2SiO2 (3:2) and 2Al2O3 · SiO2 (2:1) were prepared by the semialkoxide method using aluminum nitrate nonahydrate and tetraethylorthosilicate as reagents. The influence of the thermal processing conditions on the reaction sequence was investigated. Both 3:2 and 2:1 mullite gels formed orthorhombic mullite under fast heating (40 °C/min) at 900 °C. Slow heatings delayed the formation of mullite in both gel compositions but no formation of spinel was detected between 1000 °C and 1100 °C. The slow transformation of pentacoordinated aluminum to octahedral and tetrahedral arrangements probably depends on the larger size and extent of the …

Materials scienceSpinelMineralogychemistry.chemical_elementMulliteThermal treatmentengineering.materialCondensed Matter PhysicsStructural evolutionElectronic Optical and Magnetic MaterialsChemical engineeringchemistryOctahedronAluminiumReagentMaterials ChemistryCeramics and CompositesengineeringOrthorhombic crystal systemJournal of Non-Crystalline Solids
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Cobalt aluminate spinel-mullite composites synthesized by sol-gel method

1997

Abstract CoAl 2 O 4 spinel-mullite composites were prepared by double substitution of Al by Ti and Ni in stoichiometric 3:2 mullite. Gels with compositions 3(Al 2 − 2 x Co x Ti x O 3 )·2SiO 2 (x = 0.025, 0.05 and 0.2) and 3(Al 2 − 2 x M x O 3 )·2SiO 2 (x = 0.05; M = Co 2+ or Ti 4+ ) were synthesized by sol-gel techniques. The structure of the gels was investigated by infra-red spectroscopy. Heating gels at 750 °C produced an amorphous silicoaluminate network. The reaction sequence was investigated by differential thermal analysis, X-ray diffraction and ultraviolet-visible spectroscopy. All samples crystallized at temperatures lower than 1000 °C from the amorphous state. Al-Si spinel and/or …

Materials scienceSpinelMulliteengineering.materialMicrostructureAmorphous solidDifferential thermal analysisMaterials ChemistryCeramics and CompositesengineeringComposite materialSpectroscopyStoichiometrySol-gelJournal of the European Ceramic Society
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Strain-dependent electrical resistance of epoxy/MWCNT composite after hydrothermal aging

2015

Abstract The electrical resistance of epoxy/multi-wall carbon nanotube (MWCNT) composites was studied under the effect of hygro- and hydrothermal aging. Tensile tests were conducted and the responses in the electrical resistance were measured during the tests for samples with different prehistory of environmental exposure. The overall pattern of the electrical resistance change versus strain for the samples tested consists of linear and nonlinear regions with a broad peak that precedes the ultimate strength of the sample and occurs at the onset of evident plastic deformation in the stress–strain curve. The composite with lower content of MWCNTs exhibits a more pronounced nonlinear behavior …

Materials scienceStrain (chemistry)Composite numberGeneral EngineeringEpoxyEnvironmental exposureHydrothermal circulationElectrical resistance and conductancevisual_artUltimate tensile strengthCeramics and Compositesvisual_art.visual_art_mediumComposite materialElectrical conductorComposites Science and Technology
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Empirical model for stress ratio effect on fatigue delamination growth rate in composite laminates

2004

An empirical model is proposed for the stress ratio effect on the fatigue delamination growth rate in composite laminates under single-mode loading, intending to provide a simple and accurate description tool in engineering application. The model is based on heuristic considerations of damage accumulation ahead of the crack. Linear cumulative assumption is used for damage estimation. Comparison of the prediction based on the proposed model with the test results for different carbon, glass, and alumina fibre-reinforced composites at several stress ratios shows reasonable agreement.

Materials scienceStress ratioMechanical EngineeringDelaminationComposite laminatesIndustrial and Manufacturing EngineeringdelaminationStress (mechanics)fatigue crack growthMechanics of MaterialsModeling and Simulationpolymer matrix compositesfatigue modellingGeneral Materials ScienceGrowth rateComposite materialINTERNATIONAL JOURNAL OF FATIGUE
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Scale effect of the tensile strength of flax-fabric-reinforced polymer composites

2011

The development of UD natural fiber composites, considered for application as structural materials, necessitates evaluation of the scale effect of their strength. Alignment of the fibers in flax bast fiber composites can be achieved by employing textile reinforcement, such as yarns and fabrics. Cutting specimens for mechanical tests out of such textile-reinforced composite plates results in a complex non-uniform reinforcement structure at their edges, which may affect the strength of specimens. Scale effect of the tensile strength in the fiber direction of flax-fabric-reinforced composites is studied in the current work. A model accounting for both volume and edge effect of the specimens o…

Materials scienceStructural materialPolymers and PlasticsMechanical EngineeringComposite numberCompressive strengthMechanics of MaterialsUltimate tensile strengthMaterials ChemistryCeramics and CompositesBast fibreFiberComposite materialNatural fiberTensile testingJournal of Reinforced Plastics and Composites
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A new intermediate intercalate in superconducting sodium-doped hafnium nitride chloride

2005

Anew phase has been observed during the sodiumintercalation of hafnium nitride chloride as intermediate between the host β-HfNCl and the already reported Na 0.29 HfNCl with Tc of 24 K; the new intermediate shows interlayer spacings ranging from 9.48 to 9.67 A°, corresponds to a second stage intercalate of HfNCl and is superconducting with a critical temperature of 20 K. Beltran Porter, Daniel, Daniel.Beltran@uv.es

Materials scienceSuperconducter ; Sudium-doped hafniem nitride ; Critical temperatureSodiumUNESCO::QUÍMICAInorganic chemistryIntercalation (chemistry)chemistry.chemical_elementNitrideChloride:QUÍMICA [UNESCO]CatalysisPhase (matter)Materials ChemistrymedicineCritical temperatureSudium-doped hafniem nitrideSuperconductivityUNESCO::QUÍMICA::Química inorgánicaDopingMetals and AlloysGeneral MedicineGeneral Chemistry:QUÍMICA::Química inorgánica [UNESCO]Surfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsHafniumCrystallographySuperconducterchemistryCeramics and Compositesmedicine.drug
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Immobilization of BMP‐2, BMP‐7 and alendronic acid on titanium surfaces: Adhesion, proliferation and differentiation of bone marrow‐derived stem cells

2019

This study analyzed the influence of titanium (TiO2 ) surface modifications with two osteogenic proteins (BMP-2, BMP-7) and an anti-osteoclastic drug (alendronic acid [AA]) on sandblasted/acid-etched (SLA) and plain TiO2 (PT) on cell adhesion, proliferation and differentiation (alkaline phosphatase [AP] and osteocalcin [OC]) of bone-marrow derived stem cells (BMSCs) after 1, 3 and 7 days in-vitro. Initially, AA surfaces showed the highest cell number and surface coverage. At day 3 and 7, BMP and AA-modified surfaces exhibited a significantly enhanced cell growth. For proliferation, at days 3 and 7, an enhancement on BMP-2, BMP-7 and AA-surfaces was seen. At day 7, SLA also showed a higher p…

Materials scienceSurface PropertiesBone Morphogenetic Protein 70206 medical engineeringBiomedical EngineeringBone Morphogenetic Protein 2Biocompatible MaterialsBone Marrow Cells02 engineering and technologyBone morphogenetic protein 2BiomaterialsOsteogenesisCell AdhesionmedicineHumansCell adhesionCells CulturedCell ProliferationTitaniumAlendronateBone Density Conservation AgentsbiologyCell growthStem CellsAlendronic acidfungiMetals and AlloysCell DifferentiationAdhesion021001 nanoscience & nanotechnology020601 biomedical engineeringMolecular biologyImmobilized Proteinsmedicine.anatomical_structureembryonic structuresCeramics and CompositesOsteocalcinbiology.proteinAlkaline phosphataseBone marrow0210 nano-technologymedicine.drugJournal of Biomedical Materials Research Part A
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