Search results for "Ultimate tensile strength"

showing 10 items of 350 documents

Halloysite nanotubes filled with MgO for paper reinforcement and deacidification

2021

Abstract A novel material for the deacidification and protection of paper has been designed by using MgO filled halloysite nanotubes (Hal). The ability of MgO loaded nanotubes to control the acidic conditions was evaluated by pH measurements in aqueous solvent. Afterwards, paper was impregnated into hydroxypropyl cellulose dispersions containing the consolidating material. A simulation of strong acidic conditions allowed us to evaluate the deacidification effect of the composite material on the samples. In particular, the paper reaches a pH of 7.7 after 1 h exposition to HNO3 vapours when MgO-Hal nanoparticles are added to the impregnation mixture at a concentration of 10 wt% and it remains…

Aqueous solutionMaterials scienceHydroxypropyl celluloseHalloysite nanotubesNanoparticleGeologyDynamic mechanical analysisengineering.materialDMAHydroxypropyl cellulosemedicine.diseaseHalloysitechemistry.chemical_compoundchemistryChemical engineeringGeochemistry and PetrologyDeacidificationUltimate tensile strengthmedicineengineeringCelluloseCelluloseVapoursPaper consolidationSettore CHIM/02 - Chimica Fisica
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Numerical modelling of the tensile behaviour of BFRCM strips

2019

This paper aims at investigating the tensile behaviour of basalt fibres on cementitious matrix for the strengthening of masonry structures. The use of Basalt Fibre Reinforced Cementitious Matrix (BFRCM) is favourably considered by the scientific community because it represents a natural composite material with high compatibility with stone and masonry substrate. The study is developed through the generation of Finite Element (FE) models capable of reproducing the tensile behaviour of BFRCM strips with different number of layers of grid. For the scope, the micro-modelling approach is adopted assuming different levels of detail for the simulation of the interface constitutive behaviour. Fibre…

Basalt GridFinite Element ModellingBasalt Grid Damage Finite Element Modelling FRCM Interface Tensile behaviourTensile behaviourMaterials scienceInterface (Java)Mechanical EngineeringBasalt Grid; Damage; Finite Element Modelling; FRCM; Interface; Tensile behaviour02 engineering and technologySTRIPSInterface021001 nanoscience & nanotechnologyFRCMlaw.invention020303 mechanical engineering & transportsDamage0203 mechanical engineeringMechanics of MaterialslawUltimate tensile strengthGeneral Materials ScienceComposite material0210 nano-technology
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Glass-basalt/epoxy hybrid composites for marine applications

2011

Abstract The aim of this work is to evaluate the influence of uniaxial basalt fabric layers on the mechanical performances of a glass mat/epoxy composite used for marine applications. Polymer composites, reinforced by glass mat (GFRP), and hybrid ones, reinforced by glass mat and unidirectional basalt fabric, have been produced by vacuum bagging technique. Three points bending and tensile tests have been carried out in order to evaluate the effect of number and position of basalt layers on the mechanical properties of the investigated structures. The experimental tests have showed that the presence of two external layers of basalt involves the highest increase in mechanical properties of hy…

BasaltNatural materials Laminates MechanicalMaterials scienceA. Natural materialsComposite numberEpoxyBendingB. LaminatesFibre-reinforced plasticA. Natural materials; B. Laminates; E. MechanicalSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiE. Mechanicalvisual_artUltimate tensile strengthvisual_art.visual_art_mediumPolymer compositesComposite material
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PLA graphene nanoplatelets nanocomposites: Physical properties and release kinetics of an antimicrobial agent

2017

Abstract Graphene nanoplatelets (GnP) as filler and ciprofloxacin (CFX) as biocide were incorporated via melt-compounding into poly(lactic acid) (PLA) to obtain biopolymer-based nanocomposites with antimicrobial properties. GnP were added with the aim of improving the mechanical properties of the antimicrobial system and tuning the drug release. The obtained systems were mechanically characterized in tensile mode by quasi-static and dynamic mechanical tests. Furthermore, rheological measurements were performed. The morphology of the samples was analyzed through scanning electron microscopy (SEM). Moreover, a mathematical model, i.e. power law model, was used to fit the release data in order…

BiocideMaterials scienceScanning electron microscopeKinetics02 engineering and technologyAntimicrobial activityengineering.material010402 general chemistry01 natural sciencesIndustrial and Manufacturing Engineeringpoly(lactic acid) (PLA)RheologyUltimate tensile strengthGraphene nanoplatelets (GnP)Composite materialNanocompositeNanocompositeMechanical EngineeringDrug release021001 nanoscience & nanotechnologyAntimicrobial0104 chemical sciencesMechanics of MaterialsCeramics and CompositesengineeringBiopolymer0210 nano-technologyMechanical propertieComposites Part B: Engineering
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Interfacial shear strength of flax fibers in thermoset resins evaluated via tensile tests of UD composites

2012

Abstract A method of interfacial shear strength evaluation, based on the length distribution of fibers pulled out from the tensile fracture surface of an oriented flax-reinforced composite, is applied to composites with vinyl ester and acrylated epoxidized soy oil resin matrices. Two approaches for characterizing the strength of fibers with modified Weibull distribution, fiber fragmentation tests and fiber tension tests, are compared in the analysis of pull-out data. Interfacial shear strength is found to increase by a few percent when loading rate is increased from 1.33% to 8%/min.

BiomaterialsMaterials sciencePolymers and PlasticsTension (physics)General Chemical EngineeringUltimate tensile strengthComposite numberVinyl esterThermosetting polymerFiberAdhesiveComposite materialWeibull distributionInternational Journal of Adhesion and Adhesives
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Effects of halloysite content on the thermo-mechanical performances of composite bioplastics

2020

Abstract The aim of this study is the design and preparation of Mater-Bi/halloysite nanocomposite materials that could be employed as bioplastics alternative to the petroleum derived products. The biocomposite materials at variable halloysite content (from 0 to 30 wt%) were prepared by using the solvent casting method. We investigated the mechanical behaviour and the thermal properties of the prepared nanocomposites in order to estimate their suitability as biocompatible packaging materials. The thermo-mechanical characteristics were correlated to the nanocomposites' morphologies, which were studied by Scanning Electron Microscopy (SEM). As a general result, the physico-chemical performance…

BiopolymerMaterials scienceComposite number020101 civil engineering02 engineering and technologyDMAengineering.materialHalloysite0201 civil engineeringGeochemistry and PetrologyUltimate tensile strengthThermal stabilityComposite materialchemistry.chemical_classificationTGANanocompositeNanocompositeHalloysiteGeologyPolymer021001 nanoscience & nanotechnologyCastingBioplasticchemistryengineeringBiocomposite0210 nano-technologyApplied Clay Science
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Effect of Water on the Mechanical Behaviour of Extruded Flat Bread

1997

Abstract The effect of water on the mechanical properties of extruded breads was studied, at room temperature. As the moisture content was increased from 6 to 9% moisture, the resistance to fracture (compression tests) or rupture (tensile tests) was improved. Above this moisture range, plasticisation by water was the dominant phenomenon. The brittle to ductile transition was observed to occur within a moisture content range from 9 to 13·7% (w/w). The influence of water on the crispness of extruded bread, evaluated with sensory evaluation, is also described.

BrittlenessMaterials scienceMoistureUltimate tensile strengthOrganolepticFracture (geology)ExtrusionComposite materialCompression (physics)BiochemistryWater contentFood ScienceJournal of Cereal Science
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Simplified technique for constitutive analysis of SFRC

2014

Steel fibre reinforced concrete (SFRC) has become widespread material in areas such as underground shotcrete structures and industrial floors. However, due to the absence of material models of SFRC reliable for numerical analysis, application fields of this material are still limited. Due to interaction of concrete with fibres, a cracked section is able to carry a significant portion of tensile stresses, called the residual stresses. In present practices, residual stresses used for strength, deflection and crack width analysis are quantified by means of standard tests. However, interpretation of these test results is based on approximation using empirically deduced relationships, adequacy o…

Building constructionMaterials scienceconstitutive analysisflexural membersbusiness.industrydeformationsStrategy and ManagementNumerical analysiscrack widthExperimental dataStructural engineeringsteel fibre reinforced concreteResidualReinforced concreteShotcreteResidual stressDeflection (engineering)residual stressesUltimate tensile strengthbusinessTH1-9745Civil and Structural EngineeringJournal of Civil Engineering and Management
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Tensile behaviour of anti-symmetric CFRP composite

2011

Abstract This paper addresses the response of a 17-ply anti-symmetric carbon/epoxy composite subjected to uniaxial tensile loading. Hashin ply damage model is adopted to describe the damage behaviour of the plies, whereas damage initiation and progression of the interfaces are characterised by mixed-mode cohesive damage model. Force-displacement curves obtained numerically and experimentally show good agreement. Results show that all laminae and interfaces experience the damage except laminae with 0o fibre. In addition, damage is concentrated at the tab and central regions of the tensile specimen. Edge delamination is observed in all interfaces.

CFRP compositeTensile behaviourMaterials scienceComposite numberUniaxial tension02 engineering and technologyEdge (geometry)Interface failureFinite Element Method (FEM)0203 mechanical engineeringUltimate tensile strengthComposite materialEngineering(all)ComputingMilieux_MISCELLANEOUSLamina damagebusiness.industryDelaminationGeneral MedicineStructural engineeringEpoxy[PHYS.MECA.MSMECA]Physics [physics]/Mechanics [physics]/Materials and structures in mechanics [physics.class-ph]021001 nanoscience & nanotechnology020303 mechanical engineering & transportsvisual_artvisual_art.visual_art_medium0210 nano-technologybusiness
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Analysis of the mechanical performance of hybrid (SPR/bonded) single-lap joints between CFRP panels and aluminum blanks

2013

Abstract The increasing use of innovative materials in manufacturing of modern mechanical components has led to the development of reliable joints between innovative (composite materials etc.) and traditional materials (steel, aluminum etc.). In the last few years, hybrid joints, combining the advantages of the adhesive joints and traditional mechanical joints as bolted or riveted joints, have been shown an increasing industrial interest especially in automotive and aerospace sectors. In the present paper a systematic experimental study of hybrid lap joints was carried out with the aim to detect the optimal joint configuration. Tensile tests on hybrid joints made by combining adhesive bondi…

Carbon fiber reinforced polymerMaterials sciencePolymers and PlasticsAdhesive bondingbusiness.industryGeneral Chemical EngineeringHybrid jointStructural engineeringbondingBiomaterialsSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineLap jointMechanical jointUltimate tensile strengthRivetself piercing rivetingAdhesiveComposite materialbusinessSettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneJoint (geology)International Journal of Adhesion and Adhesives
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