Search results for "Composite material"

showing 10 items of 2340 documents

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 DRAWING ON THE STRUCTURE AND THE DYNAMIC-MECHANICAL BEHAVIOR OF SALTED POLYCAPROAMIDE.

1982

Abstract Structural determinations, obtained through density, birefringence, and WAXS measurements, are reported for nylon 6/inorganic salt fiber samples as a function of draw ratio. They confirm the possibility of achieving very high amorphous orientation in these systems. Dynamic-mechanical data have also been collected which allow determination of glass transition temperatures. These are also discussed in terms of structural parameters.

BirefringenceMaterials sciencePolymers and PlasticsGeneral ChemistryCondensed Matter PhysicsAmorphous solidchemistry.chemical_compoundDraw ratioCrystallographyNylon 6chemistryMaterials ChemistryFiberComposite materialGlass transition
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1992

Semi-IPN's of different composition, based on linear poly(methyl vinyl ether) (PVME) and crosslinked polystyrene are studied using stress and birefringence measurements in simple elongation. From quasistatic stress-strain experiments at constant T(experiment)-Tg, it can be deduced that the stress results only from the deformation of the polystyrene network, while the PVME chains do not contribute to the macroscopic stress. The concentration dependence of the network modulus is adequately described by the rubber elastic theories

BirefringenceMaterials scienceYoung's modulusMethyl vinyl etherStress (mechanics)chemistry.chemical_compoundsymbols.namesakechemistryNatural rubbervisual_artvisual_art.visual_art_mediumsymbolsGeneral Materials SciencePolystyreneComposite materialDeformation (engineering)Glass transitionAngewandte Makromolekulare Chemie
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Steel-concrete bond in lightweight fiber reinforced concrete under monotonic and cyclic actions

2005

Experimental results of the local bond stress-slip relationship of reinforcing bars embedded in lightweight fiber reinforced concrete with expanded clay aggregates are presented. The effect of the following parameters were investigated: - dimension of specimens; - anchorage length; - percentages of hooked steel fibers; - geometrical ratio of transverse reinforcement; - confinement external transverse pressure. Prismatic specimens with deformed steel bars embedded for a fixed length equal to five and eight equivalent diameters were tested under both monotonic and cyclic reversal imposed displacements at the tip of the bars, in controlled displacement tests. The influence of the above mention…

Bond strengthEngineeringBond strengthbusiness.industryMonotonic functionStructural engineeringFiber-reinforced concreteSteel fiberPhysics::Classical PhysicsPaint adhesion testinglaw.inventionLightweight concreteTransverse planeSettore ICAR/09 - Tecnica Delle CostruzionilawCyclic loadComposite materialMonotonic loadMaterial propertiesbusinessDuctilityDisplacement (fluid)ConfinementCivil and Structural Engineering
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Coupled VEM–BEM Approach for Isotropic Damage Modelling in Composite Materials

2023

Numerical prediction of composite damage behaviour at the microscopic level is still a challenging engineering issue for the analysis and design of modern materials. In this work, we document the application of a recently developed numerical technique based on the coupling between the virtual element method (VEM) and the boundary element method (BEM) within the framework of continuum damage mechanics (CDM) to model the in-plane damage evolution characteristics of composite materials. BEM is a widely adopted and efficient numerical technique that reduces the problem dimensionality due to its underlying formulation. It substantially simplifies the pre-processing stage and decreases the compu…

Boundary Element MethodDamage ModellingModeling and SimulationVirtual Element MethodComposite MaterialsSettore ING-IND/04 - Costruzioni E Strutture AerospazialiComputer Science Applications
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A HYBRID VEM/BEM NUMERICAL TECHNIQUE FOR SIMULATING DAMAGE IN COMPOSITE MATERIALS

2021

Composite materials are nowadays widely used in the aerospace sector both for primary and secondary structures for their high mechanical properties and the ability to model them according to project needs. Therefore, accurately predicting material behaviour when subjected to operating loads is extremely important in making the design process more efficient. For this purpose, computational approaches based on continuum damage mechanics have been largely used to study the progressive loss of material integrity due to the propagation and coalescence of microscopic defects. In this contribution, a recently developed hybrid computational technique, which combines the Virtual Element Method (VEM)…

Boundary Element MethodVirtual Element MethodFibre-reinforced Composite MaterialComputational Micro-mechanicComputational HomogenizationSettore ING-IND/04 - Costruzioni E Strutture Aerospaziali
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Coupling BEM and VEM for the Analysis of Composite Materials with Damage

2021

Numerical tools which are able to predict and explain the initiation and propagation of damage at the microscopic level in heterogeneous materials are of high interest for the analysis and design of modern materials. In this contribution, we report the application of a recently developed numerical scheme based on the coupling between the Virtual Element Method (VEM) and the Boundary Element Method (BEM) within the framework of continuum damage mechanics (CDM) to analyze the progressive loss of material integrity in heterogeneous materials with complex microstructures. VEM is a novel numerical technique that, allowing the use of general polygonal mesh elements, assures conspicuous simplific…

Boundary Element Method.Modeling and SimulationVirtual Element MethodFibre-reinforced Composite MaterialComputational Micro-mechanicComputational HomogenizationComputer Science ApplicationsJournal of Multiscale Modelling
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A CuIICoII Metallacyclophane-Based Metamagnet with a Corrugated Brick-Wall Sheet Architecture

2004

BrickchemistryPolymer chemistrychemistry.chemical_elementGeneral MedicineGeneral ChemistryArchitectureComposite materialCobaltCopperCatalysisMolecule-based magnetsAngewandte Chemie International Edition
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Fracture Toughness and Bridging Law of 3D Woven Composites

2003

ABSTRACT In the paper, the methodology of measuring G 1 c by using DCB specimens in the presence of large-scale bridging is adapted for investigating the delamination in 3D woven composites. The main novelties introduced in the DCB testing concern a) the loading device, b) the specimen geometry, c) the measurement scheme, and d) the determination of G 1 c and the bridging law from experimental data. The geometry-independent material characteristic G 1c as a function of the initial crack opening displacement (ICOD) is introduced. Typical values of the delamination fracture toughness of 3D glass and carbon composites are presented.

Bridging (networking)Materials scienceFracture toughnessLawCarbon compositesComposite material
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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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