Search results for "NUMBER"

showing 10 items of 3939 documents

Estimation of the elastic constants of highly porous cellular plastics reinforced with fibres embedded in foam struts

2015

In order to enhance the mechanical properties of polymer foams, fillers of different materials and sizes are being applied. Fibrous fillers shorter than the characteristic foam cell dimensions have the potential of efficient reinforcement, due to their high aspect ratio, without detrimentally interfering with foam structure. A theoretical model is developed for evaluation of the effect of filler on foam stiffness. The elastic response of rigid polymer foams filled with short fibres, of length commensurable with that of foam struts, is modelled by using the orientational averaging technique. Explicit expressions for components of the stiffness tensor of composite foams are derived in terms …

chemistry.chemical_classificationMaterials scienceMechanical EngineeringComposite numberStiffness02 engineering and technologyPolymer021001 nanoscience & nanotechnologyStructural elementchemistry.chemical_compound020303 mechanical engineering & transports0203 mechanical engineeringchemistryMechanics of MaterialsHighly porousMaterials ChemistryCeramics and CompositesmedicineComposite materialElasticity (economics)medicine.symptom0210 nano-technologyPolyurethaneStiffness matrixJournal of Composite Materials
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Mesoporous silicon carbide via nanocasting of Ludox® xerogel

2016

Porous SiC with uniformly sized 12 nm and 22 nm spherical mesopores was synthesized from nanocomposites of polycarbosilane (PCS) preceramic polymer and xerogels of Ludox® SiO2 nanoparticles as templates. The influence of PCS type (Mw 800 and 2000 Da), PCS : SiO2 ratio, pyrolysis temperature 1200–1400 °C, and addition of Ni complex to the preceramic composite was studied with respect to the SiC porous morphology, crystalline structure and chemical properties. We found that the pore walls of Ni-free por-SiC are composed of relatively large (20 nm) crystallites embedded inside a poorly crystalline SiC/SiC1+x phase. Increasing the pyrolysis temperature resulted in an increase of the large cryst…

chemistry.chemical_classificationMaterials scienceNanocompositeGeneral Chemical EngineeringComposite number02 engineering and technologyGeneral ChemistryPolymer010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesCrystallinitychemistryChemical engineeringPhase (matter)Crystallite0210 nano-technologyMesoporous materialPyrolysisRSC Advances
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Nanoclays for Conservation

2019

Within the conservation of artworks materials, this chapter describes innovative strategies based on clay nanoparticles that are promising for protective coating, surface cleaning, and consolidation. We present the preparation of polymer/montmorillonite nanocomposites, which are revealed as efficient protective coatings for highly porous stones, marbles, and bread-made artifacts. Anticorrosive films for metal substrates have been obtained by polymer filling with laponite and halloysite nanotubes (HNTs) containing corrosion inhibitors into their lumen. The dispersion of hydrophobically modified HNTs into chitosan matrix drives to fabricate biofilms with surface cleaning capacity. Rust stains…

chemistry.chemical_classificationMaterials scienceNanocompositeHalloysite nanotubesComposite numberNanoclaysPolymerengineering.materialHalloysiteNanocompositesCoatingCellulose fiberchemistry.chemical_compoundMontmorilloniteCoatingchemistryChemical engineeringengineeringSurface cleaningCelluloseConsolidation
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Strain rate effect in the single-fiber-fragmentation test

2001

The single fiber fragmentation test (SFFT) has been widely used to characterize the interface in fiber-reinforced polymers. The purpose of the work reported here was to determine the effect of strain rate on the fiber fragment lengths obtained in the SFFT. Three materials systems were used to make single-fiber-composite specimens: E-glass fiber/polycarbonate matrix, AS4-carbon fiber/polycarbonate matrix, and AU4-carbon fiber/polycarbonate matrix. The fiber-matrix adhesion in all three systems is based on physisorption rather than chemisorption. Each system was tested at strain rates ranging over four orders of magnitude. Results are reported in terms of fragment length, the dependent variab…

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsComposite numberGlass fiberGeneral ChemistryPolymerStrain rateViscoelasticityAmorphous solidchemistryvisual_artUltimate tensile strengthMaterials ChemistryCeramics and Compositesvisual_art.visual_art_mediumPolycarbonateComposite materialPolymer Composites
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Composite films of natural clay nanotubes with cellulose and chitosan

2014

Composite films based on cellulose, chitosan and halloysite clay nanotubes were prepared using a solution casting method, which allowed for a uniform distribution of nanotubes within the material and provided control over the morphology of the composite. The mechanical performance of these bio nanocomposites is influenced by humidity and the nanotubes showed a plasticisation effect on the polymeric matrix. The composites of chitosan and halloysite nanotubes (HNTs), with modified hydrophobic inner lumens, resulted in a technique for controlled and sustainable surface cleaning. Lignocellulose wood microfibres modified with HNTs were also produced by a layer-by-layer assembly. The obtained ma…

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsPolymersComposite numberPolymerComposite materialsengineering.materialPollutionCastingHalloysiteChitosanBiomaterialschemistry.chemical_compoundchemistryMaterials ChemistryengineeringCelluloseComposite material
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Kenaf-filled biodegradable composites: rheological and mechanical behaviour

2012

Biodegradable polymer composites, typically based on biodegradable polymer matrices and natural-organic fillers, are gaining rising interest and importance over the last few years. Several natural-organic fillers can be used but the most widespread so far is wood, in the form of fibres or flour. Alternative cellulosic fillers can ensure advantages in terms of resource utilization and properties of the final composite. In this work, Mater-Bi® based biodegradable composites were prepared with two kinds of wood flour, and directly compared with alternative composites containing kenaf fibres. The use of kenaf fibres allowed improved elastic modulus, tensile strength and interaction with the pol…

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsbiologyOrganic ChemistryComposite numberWood flourPolymerengineering.materialbiology.organism_classificationBiodegradable polymerKenafchemistryFiller (materials)Ultimate tensile strengthMaterials ChemistryengineeringComposite materialElastic modulusPolymer International
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Fractional viscoelastic characterization of laminated glass beams under time-varying loading

2021

Abstract Laminated glass is a composite made of elastic glass layers sandwiching thin viscoelastic polymeric interlayers. There are several types of polymers, traditionally modelled as linear viscoelastic materials using a Prony’s series of units in the Maxwell-Wiechert arrangement. We show that one single element with fractional viscoelastic properties (two constitutive parameters that depend on environmental temperature), is sufficient to provide an accurate description of the polymer response under arbitrary time-varying actions. This is a great advantage over the classical viscoelastic characterization, which requires at least 10–15 terms in the Prony’s series, each one characterized by…

chemistry.chemical_classificationMaterials scienceSeries (mathematics)Mechanical EngineeringComposite number02 engineering and technologyPolymer021001 nanoscience & nanotechnologyCondensed Matter PhysicsViscoelasticityFractional calculusCondensed Matter::Soft Condensed MatterCross section (physics)020303 mechanical engineering & transports0203 mechanical engineeringchemistryMechanics of MaterialsGeneral Materials ScienceComposite materialImage warping0210 nano-technologyLaminated glassCivil and Structural EngineeringInternational Journal of Mechanical Sciences
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The morphology of block copolymer micelles in supercritical carbon dioxide by small-angle neutron and x-ray scattering

1997

Above its critical point, carbon dioxide forms a super-critical fluid, which promises to be an environmentally responsible replacement for the organic solvents traditionally used in polymerizations. Many lipophilic polymers such as polystyrene (PS) are insoluble in CO2, though polymerizations may be accomplished via the use of PS-fluoropolymer stabilizers, which act as emulsifying agents. Small-angle neutron and X-ray scattering have been used to show that these molecules form micelles with a CO2-phobic PS core and a CO2-philic fluoropolymer corona. When the PS block was fixed in length and the fluorinated corona block was varied, the number of block copolymer molecules per micelle (six to …

chemistry.chemical_classificationMaterials scienceSupercritical carbon dioxideAggregation numberSANSSupercritical-CO2PolymerMicelleGeneral Biochemistry Genetics and Molecular BiologySupercritical fluidchemistry.chemical_compoundchemistryChemical engineeringmicelleCopolymerFluoropolymerOrganic chemistryPolystyrene
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Modeling the non-linear deformation of a short-flax-fiber-reinforced polymer composite by orientation averaging

2013

Abstract The growing usage of short-flax-fiber-reinforced polymer composites in such applications as automotive industry necessitates the prediction of their mechanical response up to and beyond the limit of elasticity. Due to the imperfect, mechanical interlocking-dominated adhesion of natural fibers to most polymers, both fiber debonding and matrix yielding contribute to the non-linear deformation. In the present study, the deformation under an active loading of a short misaligned fiber composite is modeled by the orientation averaging approach, employing an analytical description of the behavior of a unit cell (UC), the parameters of which are determined using a FEM analysis of UC respon…

chemistry.chemical_classificationMaterials scienceTension (physics)Mechanical EngineeringComposite numberPolymerElasticity (physics)Deformation (meteorology)Industrial and Manufacturing EngineeringFinite element methodNonlinear systemchemistryMechanics of MaterialsCeramics and CompositesFiberComposite materialComposites Part B: Engineering
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Photosensitive properties of composite films based on copper chloride in polymer matrix

2013

The composite films based on PMMA and CuCl2 were prepared. Transmission spectra of the films before and after illumination by different laser lines (405, 448, 456 nm) were measured. The reversible character of the composite photosensitivity was fixed. The phenomenon of direct surface relief formation after laser beam illumination of composite films was described. The holographic gratings were recorded by different exposure (200 – 500 J/cm2) in the films with different concentration (8 and 20 wt. %) of copper salt. The film sensitivity dependence on polymer molecular weight was studied. Surface relief of the gratings was measured by AFM.

chemistry.chemical_classificationMaterials sciencebusiness.industryComposite numberHolographyPolymerLaserSpectral linelaw.inventionMatrix (chemical analysis)OpticschemistryPhotosensitivitylawCopper chlorideComposite materialbusinessIOP Conference Series: Materials Science and Engineering
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