Search results for "strength"

showing 10 items of 2415 documents

Alkali activated materials using pumice from the Aeolian Islands (Sicily, Italy) and their potentiality for cultural heritage applications: Prelimina…

2020

Abstract In this paper, the potentialities of pumice-based geopolymers have been explored with the aim to evaluate their use as restoration materials. In particular, the behaviour of Aeolian pumice during alkali activation process, either alone or in binary mixtures with metakaolin, has been assessed using sodium hydroxide and sodium silicate activators. Hardened products were characterized by: X-ray diffraction; infrared spectroscopy; thermo gravimetry and electron microscopy. Furthermore, Hg-intrusion porosimetry, water absorption, compressive strength and colorimetric measurements were carried out in order to define the technical features of the produced geopolymers. The results reveal t…

Materials scienceAbsorption of waterMetallurgySodium silicateAlkali activation; Cultural Heritage; Geopolymer binders; PumiceBuilding and ConstructionPorosimetryCultural HeritageGeopolymer binderschemistry.chemical_compoundSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiCompressive strengthAlkali activationPumicechemistrySodium hydroxidePumiceGeneral Materials SciencePorosityMetakaolinCivil and Structural Engineering
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Carbon Fiber Composites Cured by γ-Radiation-Induced Polymerization of an Epoxy Resin Matrix

2008

The use of ionizing radiation in order to initiate polymerization of suitable monomers has found increased interest in the last two decades due to its several advantages. In this work, carbon fiber composites through gamma radiation polymerization of epoxy matrices have been produced for aerospace and advanced automotive applications. Composite samples were produced by irradiation at room temperature using different radiation doses and, as reference, thermal curing of the same epoxy resin formulations was also carried out. Furthermore, some irradiated samples were subjected to postirradiation thermal curing to complete the polymerization reactions. The properties of the cured materials were…

Materials scienceAbsorption of waterPolymers and PlasticsGeneral Chemical EngineeringOrganic ChemistryEpoxyThermal treatmentPolymerizationFlexural strengthvisual_artComposites Epoxy Mechanical properties Moisture absorption Radiation curing Thermal propertiesvisual_art.visual_art_mediumIrradiationComposite materialThermal analysisGlass transition
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Photo-acoustic excitation and optical detection of fundamental flexural guided wave in coated bone phantoms.

2013

Abstract Photo-acoustic (PA) imaging was combined with skeletal quantitative ultrasound (QUS) for assessment of human long bones. This approach permitted low-frequency excitation and detection of ultrasound so as to efficiently receive the thickness-sensitive fundamental flexural guided wave (FFGW) through a coating of soft tissue. The method was tested on seven axisymmetric bone phantoms, whose 1- to 5-mm wall thickness and 16-mm diameter mimicked those of the human radius. Phantoms were made of a composite material and coated with a 2.5- to 7.5-mm layer of soft material that mimicked soft tissue. Ultrasound was excited with a pulsed Nd:YAG laser at 1064-nm wavelength and received on the s…

Materials scienceAcoustics and UltrasonicsBiophysics02 engineering and technology01 natural sciencesSensitivity and SpecificityImaging phantomBone and Bones010309 opticsOpticsLamb wavesFlexural strengthCoated Materials BiocompatibleBone Density0103 physical sciencesmedicineHumansRadiology Nuclear Medicine and imagingGuided wave testingRadiological and Ultrasound Technologyta114business.industryPhantoms ImagingLasersUltrasoundReproducibility of ResultsEquipment Design021001 nanoscience & nanotechnologyEquipment Failure Analysismedicine.anatomical_structureSoundAcoustic StimulationElasticity Imaging TechniquesUltrasonic sensorCortical bonePhase velocity0210 nano-technologybusinessPhotic StimulationDensitometryUltrasound in medicinebiology
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A shear test for structural adhesives used in the consolidation of old timber

2001

A test method was developed specifically for structural adhesives used in thick joints. It is based on compressive shear loading of glued joints (GJ) and solid wood (SW) specimens, before and after a suitable accelerated ageing cycle. The evaluation of results is based on the ratios of wet strength to dry strength and on the comparison of GJ specimens to SW specimens which are prepared from the same batch of wood, in order to minimise the influence of the variability in wood characteristics. On a group of 10 epoxy-based adhesives, specifically marketed for the consolidation of old timber structures, the method has proved to be effective to differentiate the performances of each product. Amo…

Materials scienceAdhesive bondingold timber[SDV]Life Sciences [q-bio]0211 other engineering and technologies02 engineering and technologyWet strength021105 building & construction[SDV.IDA]Life Sciences [q-bio]/Food engineeringGeneral Materials Science[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringComposite materialComputingMilieux_MISCELLANEOUSConsolidation (soil)JOINTForestryTest methodEpoxy021001 nanoscience & nanotechnologySolid woodvisual_artvisual_art.visual_art_mediumAdhesiveDirect shear testadhesives0210 nano-technologyconsolidation
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Mechanical properties of steel fibre reinforced lightweight concrete with pumice stone or expanded clay aggregates

2001

This paper presents basic information on the mechanical properties of steel fibre-reinforced light-weight concrete, manufactured using pumice stone or expanded clay aggregates. Results are presented for standard compressive tests and indirect tensile tests (splitting tests on cylinder specimens and flexure tests on prismatic beams using a three-point loading arrangement) under monotonically increasing or cyclically varying loads. The influence of steel fibres and aggregate types on modulus of elasticity, compressive and tensile strength and post-peak behaviour is evaluated. Test results show that compressive strength does not change for pumice stone aggregates, while an increase is observed…

Materials scienceAggregate (composite)Young's modulusBuilding and ConstructionCylinder (engine)law.inventionsymbols.namesakeSettore ICAR/09 - Tecnica Delle CostruzioniCompressive strengthFracture toughnessMechanics of MaterialslawPumiceSolid mechanicsUltimate tensile strengthsymbolsGeneral Materials ScienceGeotechnical engineeringMaterials Science (all)Composite materialCivil and Structural Engineering
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Green composites of organic materials and recycled post-consumer polyethylene

2004

International audience; Addition of organic fillers to post‐consumer recycled plastics can give rise to several advantages. First of all, the cost of these fillers is usually very low, the organic fillers are biodegradable contributing to an improved environmental impact and, last but not least, some mechanical and thermomechanical properties can be enhanced. Organic fillers are not widely used in the plastic industry although their use is increasing. Bad dispersion into the polymer matrix at high‐level content and poor adhesion with the matrix are the more important obstacles to this approach. In this work various organic fillers have been used with a post‐consumer plastic material origina…

Materials scienceAgronomiePolymers and PlasticsGreen compositesMechanical propertiesPost‐consumer films02 engineering and technology010402 general chemistry01 natural sciences[SPI.MAT]Engineering Sciences [physics]/Materials12. Responsible consumptionchemistry.chemical_compoundViscosityInorganic fillerMaterials ChemistryRheological propertiesComposite materialchemistry.chemical_classificationbusiness.industryOrganic ChemistryIzod impact strength testChemical industryPolymerPolyethylene021001 nanoscience & nanotechnology0104 chemical scienceschemistry8. Economic growthOrganic fillers0210 nano-technologyDispersion (chemistry)businessSlightly worsePolymer International
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Effect of alloy type and casting technique on the fracture strength of implant-cemented structures.

2010

Objectives: To evaluate the influence of alloy type and casting procedure on the fracture strength (FS) of metallic frameworks for implant-supported fixed prostheses. Study design: Thirty three-unit structures for lower posterior bridges were waxed-up and randomly assigned to two groups (n=15) according to alloy type and casting technique: Group 1 (C): cobalt-chromium cast in a centrifugal machine (TS1, Degussa-Hüls); Group 2 (T): titanium cast in a pressure-differential device (Cyclarc II, Morita). Each structure was cemented onto two prefabricated abutments under a constant seating pressure. After 6 months of water aging, samples were loaded in a static universal testing machine (EFH/5/FR…

Materials scienceAlloychemistry.chemical_elementDental Cementsengineering.materialWater agingFlexural strengthMaterials TestingAlloysHardness TestsComposite materialGeneral DentistryUniversal testing machineDental Casting Technique:CIENCIAS MÉDICAS [UNESCO]OtorhinolaryngologychemistryCasting (metalworking)UNESCO::CIENCIAS MÉDICASengineeringFracture (geology)Microscopy Electron ScanningSurgeryImplantDental Prosthesis Implant-SupportedTitaniumMedicina oral, patologia oral y cirugia bucal
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Computational flow dynamics in a geometric model of intussusceptive angiogenesis.

2009

Intussusceptive angiogenesis is a process that forms new blood vessels by the intraluminal division of a single blood vessel into two lumens. Referred to as nonsprouting or intussusceptive angiogenesis, this angiogenic process has been described in morphogenesis and chronic inflammation. Mechanical forces are relevant to the structural changes associated with intussusceptive angiogenesis because of the growing evidence that physiologic forces influence gene transcription. To provide a detailed analysis of the spatial distribution of physiologic shear stresses, we developed a 3D finite element model of the intraluminal intussusceptive pillar. Based on geometries observed in adult intussuscep…

Materials scienceAngiogenesisFlow (psychology)BiochemistryModels BiologicalArticleMicrocirculationMicemedicineShear strengthShear stressAnimalsComputer SimulationIntussusceptive angiogenesisMice Inbred BALB CNeovascularization PathologicComputational BiologyCell BiologyAnatomyColitisBiomechanical PhenomenaDisease Models Animalmedicine.anatomical_structureShear (geology)Trinitrobenzenesulfonic AcidBlood CirculationBiophysicsBlood Vesselssense organsStress MechanicalCardiology and Cardiovascular MedicineShear StrengthBlood vesselMicrovascular research
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Influence of nanoporous structure on mechanical strength of aluminium and aluminium alloy adhesive structural joints

2006

The influence of surface treatments on the mechanical strength of adhesive joints was investigated. The attention was focused on AA2024 alloy because it is extensively used in both the automotive and aerospace industries. Adhesive joints fabricated with pure aluminium were also investigated in order to evidence possible differences in the surface features after identical treatments. Before joining with a commercial epoxy adhesive, metal substrates were subjected to different kinds of treatment and the surfaces were characterized by SEM analysis. The formation of a microporous surface in the AA2024 alloy, upon etching and anodizing, is discussed on the basis of the role of the intermetallic …

Materials scienceAnodizingAlloyMetallurgytechnology industry and agricultureIntermetallicchemistry.chemical_element5005 aluminium alloyengineering.materialCondensed Matter PhysicschemistryAluminiumvisual_artAluminium alloyvisual_art.visual_art_mediumengineering6063 aluminium alloyGeneral Materials ScienceSettore CHIM/07 - Fondamenti Chimici Delle TecnologieAdhesiveSurface modification anodisation nanostructure adhesive strengthJournal of Physics: Condensed Matter
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Effect of Nanodiamonds on Structure and Durability of Polyethylene Oxide-Based Nanocomposites

2016

Polymer-based nanocomposites containing nanodiamonds (NDs) are attractive multifunctional materials with a growing range of applications. In this work, in the frame of developing completely biocompatible systems, nanocomposites based on polyethylene oxide (PEO) and different amount of NDs have been formulated through melt mixing and fully characterized. In particular, the reinforcement effect of NDs in PEO has been probed through tensile tests, and the rheological response of PEO-based nanocomposites as a function of the nanoparticles amount has been investigated and discussed. The obtained results show that the presence of well-distributed NDs strengthens the mechanical performance of the …

Materials scienceArticle SubjectNanoparticle02 engineering and technology010402 general chemistry01 natural sciencesDurabilityCrystallinitylcsh:Technology (General)Ultimate tensile strengthGeneral Materials ScienceComposite materialPhotodegradationPolyethylene Oxidechemistry.chemical_classificationNanocompositeNanocompositePolymerAdhesion021001 nanoscience & nanotechnologyAccelerated aging0104 chemical sciencesSettore ING-IND/22 - Scienza E Tecnologia Dei Materialichemistrylcsh:T1-995Materials Science (all)0210 nano-technologyNanodiamondJournal of Nanomaterials
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