Search results for "Composite"

showing 10 items of 4584 documents

Temperature Coefficients of Compensated Silicon Solar Cells – Influence of Ingot Position and Blend-in-ratio

2015

Published version of an article in the journal: Energy Procedia. Also available on Science Direct: http://dx.doi.org/10.1016/j.egypro.2015.07.004 Solar-grade silicon made from a metallurgical route presents boron and phosphorus compensation. Earlier work has shown that cells made from such material produce more energy than reference polysilicon modules when the temperature and irradiance is high. In the present study, solar cells from two different ingots with different blend-in-ratios were made from wafers at varying ingot heights in order to investigate how the temperature coefficients vary with compensation level and ingot height. The results suggest that solar modules made with solar ce…

Work (thermodynamics)Materials scienceSiliconIrradiancechemistry.chemical_elementsolar-grade siliconCompensated siliconCompensation (engineering)temperature coefficientEnergy(all)chemistryForensic engineeringmulticrystalline solar cellsWaferComposite materialIngotingot heightBoronTemperature coefficientEnergy Procedia
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Temperature profiles of field-aged multicrystalline silicon photovoltaic modules affected by microcracks

2021

In this work, the temperature sensitivities of field-aged multicrystalline silicon PV modules affected by microcracks are investigated. It is found that the temperature coefficient of efficiency of all modules has increased more than 10 times over the 20 years period, mainly due to a degradation in the temperature coefficients of fill factor. Temperature coefficient of efficiency of PV modules affected by microcracks changed from -0.44 %/ °C to -1.51 %/°C under solar irradiance conditions at 1010 - 1030 W/m2. Inconsistent values for the Evans–Floschuetz efficiency ratio versus temperature plots for the microcrack affected modules were also observed.

Work (thermodynamics)Materials scienceSiliconchemistryField (physics)Photovoltaic systemDegradation (geology)chemistry.chemical_elementFill factorComposite materialSolar irradianceTemperature coefficient2021 IEEE 48th Photovoltaic Specialists Conference (PVSC)
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Kinetics of block-copolymer aggregation in super critical CO2

2002

Small angle X-ray and neutron scattering (SAXS and SANS) are used to obtain structural information on the aggregation behavior of block-copolymers dissolved in supercritical CO2. The SANS technique is used to provide a detailed structural model for the micellar aggregates, which form below the critical micellization density (CMD), that we defined in our previous work. The SAXS technique (with a synchrotron source) is used to provide the first experimental information concerning the kinetic features of both formation and decomposition of such aggregates as soon as pressure jumps are applied to the solutions across the CMD. 2002 Elsevier Science B.V. All rights reserved.

Work (thermodynamics)Materials scienceSmall-angle X-ray scatteringKineticsThermodynamicsNeutron scatteringCondensed Matter PhysicsKinetic energySynchrotronSupercritical fluidElectronic Optical and Magnetic Materialslaw.inventionlawPolymer chemistryMaterials ChemistryCeramics and CompositesCopolymerJournal of Non-Crystalline Solids
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Visualizing pectin polymer-polymer entanglement produced by interfacial water movement.

2020

In this report, we investigated the physical conditions for creating pectin polymer-polymer (homopolymer) entanglement. The potential role of water movement in creating pectin entanglement was investigated by placing water droplets-equivalent to the water content of two gel phase films-between two glass phase films and compressing the films at variable probe velocities. Slow probe velocity (0.5 mm/sec) demonstrated no significant debonding. Corresponding videomicroscopy demonstrated an occasional water bridge, but no evidence of stranding or polymer entanglement. In contrast, fast probe velocity (5 mm/sec) resulted in 1) an increase in peak adhesion strength, 2) a progressive debonding curv…

Work (thermodynamics)Materials sciencefood.ingredientPolymers and PlasticsPectinPolymers02 engineering and technologyQuantum entanglement010402 general chemistry01 natural sciencesArticleMacromolecular and Materials ChemistryAdhesion strengthfoodFood SciencesPhase (matter)Materials ChemistryComposite materialPolymerWater contentchemistry.chemical_classificationOrganic ChemistryPolymerAdhesion021001 nanoscience & nanotechnologyPectin0104 chemical scienceschemistryAdhesion0210 nano-technologyVideomicroscopy
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The recovery after bending of polycarbonate sheets

1981

The recovery after bending has been extensively studied for metal sheets. The data presented in this work show that in the case of polymeric materials viscoelastic effects play a very important role. In particular the influence of deformation rate, the time the sample is held under load and the recovery time is analysed. A master curve is obtained by proper modification of a recent analysis developed for metal sheets.

Work (thermodynamics)Materials sciencevisual_artvisual_art.visual_art_mediumGeneral Materials ScienceBendingPolycarbonateComposite materialDeformation (engineering)Condensed Matter PhysicsViscoelasticityRheologica Acta
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A high-resolution layer-wise discontinuous Galerkin formulation for multilayered composite plates

2020

Abstract In this work, a novel high-resolution formulation for multilayered composite plates is presented. The formulations is referred to as high-resolution since it combines (i) Layer-Wise plate theories, which are based on a per-layer, high-order expansion of the primary variables throughout the plate’s thickness, providing a detailed layer-level description of the sought solution; (ii) The discontinuous Galerkin method, a numerical approach based on a discontinuous representation of the unknown fields over the mesh elements and on the introduction of boundary integral operators enforcing inter-element continuity, which allow the natural treatment of high-order mesh elements and provide …

Work (thermodynamics)Mathematical analysisBoundary (topology)02 engineering and technologyLayer-wise theories Discontinuous Galerkin method Implicitly-defined mesh Multilayered composite plates021001 nanoscience & nanotechnologyDomain (mathematical analysis)020303 mechanical engineering & transports0203 mechanical engineeringDiscontinuous Galerkin methodConvergence (routing)Plate theoryCeramics and CompositesSettore ING-IND/04 - Costruzioni E Strutture Aerospaziali0210 nano-technologyRepresentation (mathematics)ComputingMethodologies_COMPUTERGRAPHICSCivil and Structural EngineeringMathematicsResolution (algebra)Composite Structures
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A non-linear Ritz method for the analysis of low velocity impact induced dynamics in variable angle tow composite laminates

2021

Abstract Variable angle tow (VAT) laminates feature composite layers reinforced by fibres following continuous curved paths and offer a wide structural design space for the manufacturing of composite components. In this work, a formulation for the analysis of the impact-induced dynamics in VAT laminated plates is proposed, implemented and tested in this work. The method is based on the adoption of first order shear deformation kinematics and includes von Karman non-linear strains. The discrete system is obtained by employing a pb-2 Ritz series expansion into the Hamilton’s variational statement, while the impact loading is modelled through Hertzian contact law. The resulting non-linear gove…

Work (thermodynamics)Mathematical analysisKinematicsComposite laminatesRitz methodDiscrete systemFirst-order shear deformation theory Low velocity impact modelling Non-linear plate dynamics Ritz method Variable angle tow (VAT) laminates Von Karman approximationNonlinear systemContact mechanicsCeramics and CompositesSeries expansionSettore ING-IND/04 - Costruzioni E Strutture AerospazialiCivil and Structural EngineeringMathematics
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Combined effect of solvent content, temperature and pH on the chromatographic behaviour of ionisable compounds.

2008

The organic solvent content and the pH in the mobile phase are the usual main factors in reversed-phase liquid chromatographic separations, owing to their strong effects on retention and/or selectivity. Temperature is often neglected. However, even in cases where the impact of this factor on selectivity is minor, the reduction in analysis time is still an interesting reason to consider it. In addition, ionisable compounds may exhibit selectivity changes, owing to the interaction of organic solvent and/or temperature with pH. The separation of ionisable compounds (nine diuretics: bendroflumethiazide, benzthiazide, bumetanide, chlorthalidone, furosemide, piretanide, probenecid, trichloromethi…

Work (thermodynamics)Resolution (mass spectrometry)Central composite designAdrenergic beta-AntagonistsAnalytical chemistryProtonationHigh-performance liquid chromatographyBiochemistryAnalytical ChemistryChemometricschemistry.chemical_compoundmedicineAcetonitrileDiureticsIonsChromatographyChemistryOrganic ChemistryTemperatureGeneral MedicineReversed-phase chromatographyHydrogen-Ion ConcentrationSolventSolventsXipamideBenzthiazideSelectivitymedicine.drugChromatography LiquidJournal of chromatography. A
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Numerical study of photolithography system: electromagnetic differential method

2004

The R-matrix propagation algorithm is incorporated into the differential method to achieve an extended capability for modelling a photolithography systems. We show throughout this work the ability of the R-matrix algorithm and differential method to analyse gratings of arbitrary depth, profile, and conductivity without encountering numerical instabilities. We calculate the field intensity and the transmitted amplitudes in the 0 and −1 orders below different masks. We study also the influence of the various parameters (incidence, groove spacing, groove depth and index of refraction) on the field intensity maps and the transmittivity power. These results agree with the experimental patent: we…

Work (thermodynamics)business.industryMetals and AlloysIndustrial and Manufacturing EngineeringComputer Science ApplicationsPower (physics)law.inventionOpticsAmplitudelawAperiodic graphModeling and SimulationCeramics and CompositesPhotolithographybusinessRefractive indexGroove (music)MathematicsIncidence (geometry)Journal of Materials Processing Technology
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Narrow Band Solid-Liquid Composite Arrangements: Alternative Solutions for Phononic Crystal-Based Liquid Sensors

2019

Periodic elastic composite structures attract great attention. They offer the ability to design artificial properties to advance the control over the propagation of elastic/acoustic waves. In previous work, we drew attention to composite periodic structures comprising liquids. It was shown that the transmission spectrum of the structure, specifically a well-isolated peak, follows the material properties of liquid constituent in a distinct manner. This idea was realized in several liquid sensor concepts that launched the field of phononic crystal liquid sensors. In this work we introduce a novel concept&mdash

Work (thermodynamics)liquid sensorMaterials scienceField (physics)Composite numberacoustic band structure02 engineering and technologylcsh:Chemical technology01 natural sciencesBiochemistryArticleAnalytical Chemistry[SPI.MAT]Engineering Sciences [physics]/Materials010309 opticsCrystalperiodic composite structureSpeed of sound0103 physical scienceslcsh:TP1-1185Electrical and Electronic Engineering[SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/MicroelectronicsInstrumentationspeed of sound[SPI.ACOU]Engineering Sciences [physics]/Acoustics [physics.class-ph]business.industryAcoustic wavedetection of fluid propertiessolid-liquid interaction021001 nanoscience & nanotechnologyphononic crystal sensorAtomic and Molecular Physics and OpticsTransmission (telecommunications)acoustic transmission spectraOptoelectronics0210 nano-technologybusinessMaterial properties
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