Search results for "Elastic Modulu"

showing 10 items of 189 documents

PHASE TRANSITIONS IN THE PLZT x/85/15 SOLID SOLUTIONS

2008

ABSTRACT Role of a La on the nature of phase transition in the PLZT x/85/15 is compared with the PLZT compositions of lower Zr/Ti ratio. Thermal dependence of the dielectric permittivity, thermal expansion and elastic modulus reveal sequential transfer from macroscopic ferroelectric to antiferroelectric and nonpolar state, if La concentration is increased. Diffused, from frequency independent thermal dependence of dielectric permittivity for compositions in certain La concentration range above 4 at% coexist with the well expressed phase transition between paraelectric and antiferroelectric phases.

Phase transitionMaterials scienceCondensed matter physicsPhysics::OpticsDielectricCondensed Matter PhysicsFerroelectricityThermal expansionElectronic Optical and Magnetic MaterialsCondensed Matter::Materials ScienceControl and Systems EngineeringThermalMaterials ChemistryCeramics and CompositesAntiferroelectricityElectrical and Electronic EngineeringElastic modulusSolid solutionIntegrated Ferroelectrics
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Biocomposite PBAT/lignin blown films with enhanced photo-stability.

2022

Lignin can be obtained as a byproduct during cellulose-rich pulp fibers production and it is habitually treated as waste or intended for low-value destinations. However, due to UV absorption and mechanical properties, lignin can contribute to the fabrication of biodegradable blown films with superior performances. In this study, it was established the suitability of lignin for manufacturing biocomposite PBAT blown films with higher stiffness and photo-oxidation resistance. The effect of the filler concentration on the melt rheological behavior in non-isothermal elongational flow was investigated. The results allowed us to choose the correct filler concentration for producing films through a…

Photo-oxidative resistanceSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiStructural BiologyElastic ModulusPBATGeneral MedicineCelluloseMolecular BiologyBiochemistryLigninBiocomposite blown filmInternational journal of biological macromolecules
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ORMOSIL thin films: Tuning mechanical properties via a nanochemistry approach

2006

The mechanical properties (hardness and elastic modulus) of organically modified silicate thin films can be finely tuned by varying the degree of alkylation and thus the fraction of six- and four-membered siloxane rings in the organosilica matrix. This opens the way to large tunability of parameters that are of crucial practical importance for films that are finding increasing application in numerous fields ranging from microelectronics to chemical sensing.

PhotonsMaterials sciencebusiness.industryNanochemistryNanotechnologySurfaces and InterfacesCondensed Matter PhysicsOrmosilSilicatePolymerizationtwo-photon polymerizationchemistry.chemical_compoundchemistrySiloxaneElectrochemistryMicroelectronicsGeneral Materials ScienceThin filmbusinessElastic modulusSpectroscopy
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Theory of vibrational anomalies in glasses

2015

Abstract The theory of elasticity with spatially fluctuating elastic constants (heterogeneous-elasticity theory) is reviewed. It is shown that the vibrational anomalies associated with the boson peak can be qualitatively and quantitatively explained in terms of this theory. Two versions of a mean-field theory for solving the stochastic equation of motion are presented: the coherent-potential approximation (CPA) and the self-consistent Born approximation (SCBA). It is shown that the latter is included in the former in the Gaussian and weak-disorder limit. We are able to discuss and explain cases in which the change of the vibrational spectrum by varying an external parameter can be accounted…

PhysicsGaussianCondensed Matter Physics; ceramics and composites; electronic optical and magnetic materials; Materials Chemistry; metals and alloysEquations of motionVibrational spectrumCondensed Matter PhysicsDebye frequencyElectronic Optical and Magnetic Materialssymbols.namesakeQuantum mechanicsMaterials ChemistryCeramics and CompositessymbolsBoson peakElasticity (economics)Born approximationElastic modulus
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High-frequency vibrational density of states of a disordered solid.

2013

We investigate the high-frequency behavior of the density of vibrational states in three-dimensional elasticity theory with spatially fluctuating elastic moduli. At frequencies well above the mobility edge, instanton solutions yield an exponentially decaying density of states. The instanton solutions describe excitations, which become localized due to the disorder-induced fluctuations, which lower the sound velocity in a finite region compared to its average value. The exponentially decaying density of states (known in electronic systems as the Lifshitz tail) is governed by the statistics of a fluctuating-elasticity landscape, capable of trapping the vibrational excitations.

PhysicsInstantonYield (engineering)Condensed matter physicsFOS: Physical sciencesDisordered Systems and Neural Networks (cond-mat.dis-nn)TrappingCondensed Matter - Disordered Systems and Neural NetworksCondensed Matter PhysicsVibrational density of statesDensity of statesGeneral Materials ScienceElastic modulusElectronic systemsJournal of physics. Condensed matter : an Institute of Physics journal
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Elastic moduli, dislocation core energy and melting of hard disks in two dimensions

2000

Elastic moduli and dislocation core energy of the triangular solid of hard disks of diameter $\sigma$ are obtained in the limit of vanishing dislocation- antidislocation pair density, from Monte Carlo simulations which incorporates a constraint, namely that all moves altering the local connectivity away from that of the ideal triangular lattice are rejected. In this limit, we show that the solid is stable against all other fluctuations at least upto densities as low as $\rho \sigma^2 = 0.88$. Our system does not show any phase transition so diverging correlation lengths leading to finite size effects and slow relaxations do not exist. The dislocation pair formation probability is estimated …

PhysicsPhase transitionCondensed matter physicsStatistical Mechanics (cond-mat.stat-mech)Monte Carlo methodFOS: Physical sciencesHexagonal latticeFugacityLimit (mathematics)DislocationHexatic phaseElastic modulusCondensed Matter - Statistical Mechanics
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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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TOWARD A DESIGN METHOD FOR METAL-COMPOSITE CO-CURED JOINT BASED ON THE G-SIFs

2013

Abstract In this work, a systematic study of the singular stress field in the zone where the interface intersects the free edge surfaces of bonded metal-composite co-cured joints, has been performed. The obtained theoretical, numerical and experimental results have permitted to detect the relationships between the joint configuration and the singular stress field, as well as to implement a new design method based on the so called generalised stress intensity factors. Such a proposed method allows the user to predict the static strength of a generic metal-composite co-cured joint, vs. the main influence parameters as the elastic modulus of the coupled materials, the overlap length, the taper…

Polymer-matrix composites (PMCs)Work (thermodynamics)Materials sciencebusiness.industryMechanical EngineeringComposite numberStructural engineeringIndustrial and Manufacturing EngineeringJoints/joiningStress fieldAnalytical modelingSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineLap jointMechanics of MaterialsCeramics and CompositesStrengthComposite materialbusinessElastic modulusJoint (geology)Stress intensity factorReliability (statistics)
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Preparation and mechanical properties of intercalated PP/OMMT nanocomposites

2007

The preparation of polymer nanocomposites by melt compounding polypropylene (PP) with organically modified montmorillonite using maleic anhydride modified PP as compatibilizer is described. Compositions with organomontmorillonite content 0, 5, 10 wt.% were prepared and tested. Data on the influence of organomontmorillonite content on the tensile stress?strain curves, elastic modulus, strength, and ultimate elongation of the nanocomposites are obtained. The concentration dependences of elastic properties of materials with differently oriented plate like nanoparticles analyses taking into account hierarchical structure features of nanocomposites is considered. Theoretical analysis results are…

PolypropyleneHistoryMaterials scienceNanocompositePolymer nanocompositeMaleic anhydrideIzod impact strength testComputer Science ApplicationsEducationchemistry.chemical_compoundMontmorillonitechemistryDeformation (engineering)Composite materialElastic modulusJournal of Physics: Conference Series
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Thermal and Mechanical Properties of Unvulcanized Polypropylene Blends with Different Elastomers: Ethylene-Propylene-Diene Terpolymer, Nitrile-Butadi…

2013

In this work, composites of isotactic polypropylene (PP) with three unvulcanized elastomers – terpolymer of ethylene-propylene-dicyclopentadiene (EPDM), chlorinated polyethylene (CPE) and copolymer of acrylonitrile-butadiene (NBR) – have been investigated. The purpose of the investigation was to create PP/elastomer blend composites of significantly different compositions (with an excess of PP, intermediate ones, and with an excess of elastomer) and to study the dependence of tensile behaviour and elastic properties on the blends with different component ratio. Tensile properties have been recognized from the stress-strain curves. The changes of elastic modulus have been characterized with r…

PolypropyleneMaterials scienceMechanical EngineeringEthylene propylene rubberElastomerCrystallinitychemistry.chemical_compoundDifferential scanning calorimetrychemistryMechanics of MaterialsTacticityGeneral Materials SciencePolymer blendComposite materialElastic modulusKey Engineering Materials
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