Search results for "composite"

showing 10 items of 4584 documents

Shear banding mechanism of plastic deformation in LiF irradiated with swift heavy ions

2012

The effect of ion irradiation on the behavior of plastic deformation at micro- and nanoindentation on (001) face of LiF has been investigated. The irradiation was performed using heavy ions (U, Au, Ti and S) with energy in the range from 3 MeV to 2 GeV at fluences up to 5x1013 ions/cm2. In non-irradiated LiF, the indentation produces dislocation gliding on the {110} planes along the and directions. At high fluence irradiation, the resource of the dislocation slip along the preferable directions becomes exhausted due to immobilization of dislocations by radiation defects and their aggregates. The present study demonstrates the change of the mechanism of plastic deformation from homogenous di…

Dislocation creepMaterials sciencePhysics::Instrumentation and DetectorsPhysics::Medical PhysicsSlip (materials science)NanoindentationFluenceCondensed Matter::Materials ScienceIndentationForensic engineeringIrradiationDislocationComposite materialDeformation (engineering)IOP Conference Series: Materials Science and Engineering
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Cataclastic solution creep of very soluble brittle salt as a rock analogue

1998

Until about the late 1960s, macroscopically ductile deformation of quartz was seen as a microscopically cataclastic process by most geologists (cf. the origin of the name ‘mylonite’). Undulatory extinction, subgrains, recrystallised grains and even crystallographic preferred orientations were interpreted as due to water-assisted brittle deformation processes. Nowadays, by contrast, the occurrence of these optical microstructures is considered as conclusive and unequivocal evidence for dislocation creep. The abundance of these microstructures in naturally deformed rocks lead to the conclusion that dislocation creep is the most important ductile deformation mechanism within the Earth’s crust.…

Dislocation creepUndulose extinctionMineralogyDiffusion creepCataclastic rockGeophysicsBrittlenessDeformation mechanismCreepSpace and Planetary ScienceGeochemistry and PetrologyEarth and Planetary Sciences (miscellaneous)Deformation (engineering)Composite materialGeologyEarth and Planetary Science Letters
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A family of weakest link models for fiber strength distribution

2007

It is well known that the most widely used distribution function for fiber tensile strength, the two-parameter Weibull distribution, does not always adequately describe the experimentally observed fiber strength scatter and the strength dependence on fiber length. To remedy this discrepancy, modifications of the Weibull distribution have been proposed that, while providing a good empirical fit to the strength data, sometimes lack the theoretical appeal of the weakest link models. We derive a family of weakest link models based on the assumption of a two-stage failure process incorporating explicitly the probabilities of flaw initiation and the fiber fracture due to the largest flaw (i.e. th…

Distribution functionMaterials scienceMechanics of MaterialsFiber (mathematics)Ultimate tensile strengthGlass fiberCeramics and CompositesFracture (geology)Composite materialGauge (firearms)Link (knot theory)Weibull distributionComposites Part A: Applied Science and Manufacturing
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Urbach absorption edge of silica: reduction of glassy disorder by fluorine doping

2004

Abstract The vacuum-ultraviolet fundamental absorption edge (‘Urbach edge’) of four types of synthetic silica glasses, ‘wet’, ‘dry’, and doped by 570 and 6010 ppm wt. fluorine, was studied in the absorption coefficient range (1 cm−1–500 cm−1) at room temperature. The absorption edge has exponential form in agreement with the Urbach’s rule. The well-documented increase of vacuum-ultraviolet transparency upon fluorine doping is due to a steeper absorption edge (shorter ‘Urbach tail’) as compared to undoped silicas. The increase of the edge slope in F-doped silica occurs already the lower dopant concentration (570 ppm), the slope does not increase further in the 6010 ppm doped glass. These fin…

DopantAbsorption spectroscopyChemistryDopingAnalytical chemistrychemistry.chemical_elementEdge (geometry)Condensed Matter PhysicsElectronic Optical and Magnetic MaterialsAbsorption edgeChemical bondAttenuation coefficientMaterials ChemistryCeramics and CompositesFluorineJournal of Non-Crystalline Solids
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In VitroRelease of Local Anaesthetic and Anti-Inflammatory Drugs from Crosslinked Collagen Based Device

2012

The drug delivery systems that are the object of this article take the form of a hydrophilic matrix (collagen or crosslinked collagen) containing a drug. These devices can be used as The model active agents, were chosen from the range of local anaesthetics (lidocaine hydrochloride), anti-inflammatory (diclofenac sodium salt) and antioxydant (caffeic acid). Whatever the drug affinity for water, in the first time of the experiments, the release appears to be systematically delayed when the matrix is crosslinked. For lidocaine hydrochloride based systems, as the amount of drug increases in the matrix, the high gap concentration between the matrix and the buffer solution promote the diffusion a…

DrugMaterials scienceChromatographyPolymers and Plasticsmedia_common.quotation_subjectfood and beveragesGeneral ChemistryDiclofenac SodiumLidocaine HydrochlorideBuffer solutionControlled releaseMatrix (chemical analysis)chemistry.chemical_compoundchemistryDrug deliveryMaterials ChemistryCeramics and CompositesOrganic chemistrySolubilitymedia_commonJournal of Macromolecular Science, Part A
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Dense drug-eluting biodegradable Fe-Ag nanocomposites

2021

Abstract Biodegradable metals in orthopedics are aimed to eliminate secondary the surgical intervention for implant removal, and thus improve patient compliance, reduce surgery costs and the risk of infections. In addition, biodegradable implants could be loaded with different drugs to prevent the growth of pathogens and the development of bone infections, kill remaining cancer cells after tumor resection or stimulate bone regeneration. However, drugs undergo thermal decomposition under the conditions of conventional metal fabrication processes. In this work, we describe the fabrication of a dense drug-eluting biodegradable Fe-Ag nanocomposite containing 10 vol% of Ag and loaded with the an…

DrugMaterials scienceLocal drug deliverymedia_common.quotation_subjectCold sinteringTumor resection02 engineering and technology010402 general chemistry01 natural sciencesImplant removalBone biomaterialsDrug-eluting metalsmedicineGeneral Materials ScienceBone regenerationPatient complianceMaterials of engineering and construction. Mechanics of materialsmedia_commonNanocompositeMechanical EngineeringBiodegradable implants021001 nanoscience & nanotechnology0104 chemical sciencesFe-Ag nanocompositesMechanics of MaterialsTA401-492VancomycinBiodegradable metals0210 nano-technologyBiomedical engineeringmedicine.drugMaterials & Design
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X-ray crystallography-promoted drug design of carbonic anhydrase inhibitors.

2015

1-N-Alkylated-6-sulfamoyl saccharin derivatives were prepared and assayed as carbonic anhydrase inhibitors (CAIs). During X-ray crystallographic experiments an unexpected hydrolysis of the isothiazole ring was evidenced which allowed us to prepare highly potent enzyme inhibitors with selectivity for some isoforms with medical applications.

DrugModels MolecularStereochemistryProtein Conformationmedia_common.quotation_subjectCrystallography X-RayCatalysisHydrolysischemistry.chemical_compoundCarbonic anhydraseMaterials ChemistryHumansCarbonic Anhydrase Inhibitorsmedia_commonCarbonic Anhydraseschemistry.chemical_classificationIsothiazolebiologyMetals and AlloysGeneral ChemistryLyaseSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsIsoenzymesEnzymechemistryDrug DesignX-ray crystallographyCeramics and Compositesbiology.proteinSelectivityChemical communications (Cambridge, England)
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Ductility of Reinforced Concrete Members Externally Wrapped with Fiber-Reinforced Polymer Sheets

2007

The effectiveness of external wrapping with fiber-reinforced polymer for enhancing the curvature ductility of lightly reinforced concrete members is investigated. Referring to members with circular transverse cross sections, the performances in terms of both strength and ductility capacities are analyzed, and the predictive reliability of two different recent constitutive models, available in the literature and able to take into account the softening behavior of confined concrete, is checked. A parameter characterizing the effectiveness of the confining wrapping is proposed, and characteristic values are suggested. Moreover, referring to ductility increases due to confinement effects, a com…

Ductility; Sheets; Fiber reinforced polymers; Reinforced ConcreteMaterials sciencebusiness.industryMechanical EngineeringBuilding and ConstructionStructural engineeringFibre-reinforced plasticCurvatureductility sheets fiber reinforced polymers concrete reinforcedSettore ICAR/09 - Tecnica Delle CostruzioniComposite constructionTransverse planeMechanics of MaterialsReinforced solidCeramics and CompositesComposite materialbusinessDuctilitySofteningCivil and Structural EngineeringParametric statisticsJournal of Composites for Construction
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Durability of advanced nanocomposites based on polyethylene oxide and nanodiamonds

2016

Nanodiamonds nanoparticles (NDs) are amongst the most promising materials for multifunctional nanocomposites for various applications

Durability advanced nanocomposites polyethylene oxide nanodiamonds
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Hybrid biocomposites based on polylactic acid and natural fillers from Chamaerops humilis dwarf palm and Posidonia oceanica leaves

2022

AbstractPlatelet-like and fibrous lignocellulosic fillers were achieved from the leaves of Chamaerops humilis (CHL) and Posidonia oceanica (POL) and used as a hybrid reinforcement for a polylactic acid (PLA) matrix at three different loading levels (from 5 to 20%). The materials were fully characterized from a morphological, physicochemical, mechanical, and dynamic-thermomechanical point of view. When compared to their counterpart containing either CHL or POL only, the resulting hybrid biocomposites showed the highest mechanical properties, with strengthening and stiffening effects respectively up to 120% and 50% higher than those expected from the linear combination of the two, and higher …

Dwarf palmPolymers and PlasticsMaterials Science (miscellaneous)Materials ChemistryCeramics and CompositesLignocellulosic fillersDMAHybrid biocompositesInterphase
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