Search results for "Modulus"

showing 10 items of 491 documents

An insight on the thermo-mechanical behaviour of a shale

2016

In recent years, several shale formations have been employed in geo-energy related engineering fields that foresee the presence of high thermal loads or significant temperature variations. Such thermal conditions are related to a need to reach great depths (several hundred of meters), as in the case of CO2 sequestration and Enhanced Geothermal System (EGS) technologies, or to the presence of thermal sources, as in the context of nuclear waste geological disposal. In addition, thermal changes can occur in shale formations through the injection of drilling and fracturing fluids at great depths, where a higher temperature with respect to the one of the injected fluid is encountered as a result…

Yield (engineering)Consolidation (soil)ModulusEnhanced geothermal systemshaleThermalCompressibilitymedicineSwellingmedicine.symptomComposite materialPetrologyOil shaleGeology
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Thermo-mechanical volume change behaviour of Opalinus Clay

2016

The paper examines the thermo-mechanical volume change behaviour of Opalinus Clay in relation to different stress conditions and overconsolidation ratio (OCR) values and evaluates the impact of temperature on some hydro-mechanical properties of this material. To this aim, a focused experimental campaign consisting in high-temperature/high-pressure oedometric tests has been carried out. The results show that the thermo-mechanical volume change behaviour of Opalinus Clay is heavily affected by the OCR: thermal expansion is found when the heating is carried out at high OCR, whereas irreversible thermal compaction is observed when heat is applied at a vertical effective stress that is sufficien…

Yield (engineering)Materials scienceConsolidation (soil)Settore ICAR/07 - GeotecnicaEffective stressGeo-energy0211 other engineering and technologiesCompactionModulus02 engineering and technology010502 geochemistry & geophysicsShaleGeotechnical Engineering and Engineering Geology01 natural sciencesThermal expansionThermo-mechanical behaviourThermalShalesCompressibilityGeotechnical engineeringOpalinus ClayNuclear waste storage021101 geological & geomatics engineering0105 earth and related environmental sciences
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New Polylactic Acid Composites Reinforced with Artichoke Fibers

2015

In this work, artichoke fibers were used for the first time to prepare poly(lactic acid) (PLA)-based biocomposites. In particular, two PLA/artichoke composites with the same fiber loading (10% w/w) were prepared by the film-stacking method: the first one (UNID) reinforced with unidirectional long artichoke fibers, the second one (RANDOM) reinforced by randomly-oriented long artichoke fibers. Both composites were mechanically characterized in tensile mode by quasi-static and dynamic mechanical tests. The morphology of the fracture surfaces was analyzed through scanning electron microscopy (SEM). Moreover, a theoretical model, i.e., Hill's method, was used to fit the experimental Young's modu…

biocompositeScanning electron microscopy (SEM)Materials scienceMorphology (linguistics)Scanning electron microscopequasi-static tensile testsDynamic mechanical analysis (DMA)Moduluslcsh:TechnologyArticlefilm stackingFilm stackingQuasi-static tensile testschemistry.chemical_compoundMaterials Science(all)Polylactic acidArtichoke fiberPLA; artichoke fiber; biocomposites; film stacking; quasi-static tensile tests; dynamic mechanical analysis (DMA); scanning electron microscopy (SEM)Ultimate tensile strengthmedicinescanning electron microscopy (SEM).General Materials ScienceFiberComposite materiallcsh:Microscopylcsh:QC120-168.85biocompositesBiocompositesartichoke fiberlcsh:QH201-278.5lcsh:TPLA; artichoke fiber; biocomposites; film stacking; quasi-static tensile tests; dynamic mechanical analysis (DMA); scanning electron microscopy (SEM).Stiffnessdynamic mechanical analysis (DMA)Settore ING-IND/22 - Scienza E Tecnologia Dei Materiali/dk/atira/pure/subjectarea/asjc/2500chemistrylcsh:TA1-2040PLAlcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineeringmedicine.symptomscanning electron microscopy (SEM)lcsh:Engineering (General). Civil engineering (General)lcsh:TK1-9971quasi-static tensile testMaterials
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Computer vision and thermal monitoring of HMPE fibre rope condition during CBOS testing

2020

Abstract Fibre rope usage in deep sea lifting operations is gaining more prominence in recent times. With rope minimum break loads (MBL) comparable to that of their steel wire counterparts, the use of high modulus polyethylene (HMPE) ropes is seen as a viable option for use in subsea construction cranes. The ropes are worn out during use and visual inspection remains one of the main methods of determining whether a fibre rope is to be retired from use, therefore a natural extension is condition monitoring through computer vision. Creep and temperature are constraining with HMPE ropes and should be monitored continuously, particularly when the rope is cyclically bent over sheaves. Additional…

business.industryComputer scienceModulusCondition monitoring020101 civil engineeringOcean Engineering02 engineering and technology01 natural sciences010305 fluids & plasmas0201 civil engineeringVDP::Teknologi: 500CreepSheavePhysics::Space Physics0103 physical sciencesAstrophysics::Solar and Stellar AstrophysicsThermal monitoringComputer visionArtificial intelligencebusinessMonitoring featuresSubseaRope
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Some conventional and unconventional educational column stability Problems

2006

Two interesting problems are considered for enriching the curriculum of the Strength of Materials course, in the light of recently developed functionally graded materials (FGMs), characterized with the smooth variation of the elastic modulus. These are problems associated with buckling of columns with variable flexural rigidity along the axis of the column. A simple semi-inverse method is proposed for determining closed-form solutions of axially inhomogeneous columns. In order for the presentation to be given in one package, the conventional problems are also recapitulated along with the novel ones. The main approach adopted here is the use of the second-order differential equation, instea…

business.industryDifferential equationApplied MathematicsMechanical EngineeringMathematical analysisAerospace EngineeringOcean EngineeringFlexural rigidityBuilding and ConstructionStructural engineeringStrength of materialsColumn (database)BucklingAxial symmetrybusinessElastic modulusCivil and Structural EngineeringVariable (mathematics)Mathematics
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Maximum Displacement Variability of Stochastic Structures Subject to Deterministic Earthquake Loading

1998

The variability of the maximum response displacement of random frame structures under deterministic earthquake loading are examined in this paper using stochastic finite element techniques. The elastic modulus and the mass density are assumed to be described by cross-correlated stochastic fields. Specifically, a variability response function formulation is used for this problem, which allows for calculation of spectral-distribution-free upper bounds of the maximum displacement variance. Further, under the assumption of prespecified correlation functions describing the spatial variation of the material properties, variability response functions are used to calculate the corresponding maximum…

business.industryMechanical EngineeringMathematical analysisVariance (accounting)Structural engineeringFunction (mathematics)Geotechnical Engineering and Engineering GeologyCondensed Matter PhysicsDisplacement (vector)Finite element methodlcsh:QC1-999Mechanics of MaterialsSpatial variabilityMaterial propertiesbusinessElastic modulusRandomnesslcsh:PhysicsCivil and Structural EngineeringMathematicsShock and Vibration
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Reinforcement Efficiency of Cellulose Microfibers for the Tensile Stiffness and Strength of Rigid Low-Density Polyurethane Foams

2020

Rigid low-density closed-cell polyurethane (PU) foams are widely used in both thermal insulation and structural applications. The sustainability of PU foam production can be increased by using bio-based components and fillers that ensure both enhanced mechanical properties and higher renewable material content. Such bio-based foams were produced using polyols derived from rapeseed oil and microcrystalline cellulose (MCC) fibers as filler. The effect of MCC fiber loading of up to 10 wt % on the morphology, tensile stiffness, and strength of foams has been evaluated. For estimation of the mechanical reinforcement efficiency of foams, a model allowing for the partial alignment of filler fibers…

business.product_categoryMaterials scienceYoung's modulus02 engineering and technology010402 general chemistry01 natural scienceslcsh:TechnologyArticlesymbols.namesakechemistry.chemical_compoundmicrocrystalline cellulose fibersThermal insulationMicrofiberUltimate tensile strengthpolymer matrix compositesGeneral Materials ScienceFiberYoung’s modulusCelluloseComposite materiallcsh:MicroscopyPolyurethanelcsh:QC120-168.85lcsh:QH201-278.5business.industrylcsh:T021001 nanoscience & nanotechnologyrigid polyurethane foams0104 chemical sciencesMicrocrystalline cellulosechemistrytensile strengthlcsh:TA1-2040symbolslcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineering0210 nano-technologybusinesslcsh:Engineering (General). Civil engineering (General)lcsh:TK1-9971Materials
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Liquid Crystalline Elastomers—Characterization as Networks

1994

Abstract This paper summarises the properties of archiral and chiral liquid crystalline (LC) elastomers, the latter of which have found interest due to their piezoelectric properties. In addition the formation of new LC elastomers by a radical polymerization of acrylate groups covalently linked to LC polymers was investigated. This was done concerning the progress of the crosslinking reaction, concerning the influence of the crosslinking on the LC phases and concerning the network properties (swelling ratio and elastic modulus) of the resulting elastomers. It turns out that the networks prepared in this way are very soft and their crosslinking density is low. This can be explained assuming …

chemistry.chemical_classificationAcrylateMaterials scienceRadical polymerizationPolymerCondensed Matter PhysicsElastomerchemistry.chemical_compoundchemistryLiquid crystalPhase (matter)Polymer chemistryElastic modulusPhotoinitiatorMolecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals
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Correlation between processability and properties of a high density polyethylene by a rheological approach

2002

The thermal-oxidative and thermal-mechanical stability of high density polyethylene (chromium based catalyst technology) was examined at many different temperatures using a rheological approach. The changes in molecular structure, which take place during processing, have been studied using a Clextral co-rotating twin-screw extruder in comparison with dynamic measurements performed with a rotational rheometer under definite conditions of temperature, strain and frequency and in presence of air. In order to evaluate the degradation response, an investigation of elastic modulus G' as a function of frequency ω on the residual sample after ageing has been carried out. The molecular weight increa…

chemistry.chemical_classificationExtrusion mouldingMaterials sciencePolymers and PlasticsRheometerOrganic ChemistryPolymerPolyethyleneCondensed Matter PhysicsViscoelasticitychemistry.chemical_compoundchemistryRheologyPolymer chemistryMaterials ChemistryHigh-density polyethylenePhysical and Theoretical ChemistryElastic modulusMacromolecular Chemistry and Physics
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The effect of partial exfoliation of multilayer silicate filler particles on the elastic properties of a polymer composite

2018

Abstract A method for stepwise calculation the elastic constants of a three-phase composite, including the polymer matrix, the fully exfoliated silicate nanolayers and the platelike silicate particles in the form of multilayer intercalated stacks is considered. A theoretical analysis is carried out by using the Mori–Tanaka theory of an equivalent medium. The influence of degree of exfoliation (the ratio of exfoliated filler content to the total filler content) on the reinforcing efficiency is studied and discussed. A comparative analysis of experimental data of elastic modulus for a rigid polyurethane/montmorillonite composite and prediction results is carried out. It is shown, that with gr…

chemistry.chemical_classificationFiller (packaging)Materials scienceComposite number02 engineering and technologyPolymer021001 nanoscience & nanotechnologyExfoliation jointSilicatechemistry.chemical_compound020303 mechanical engineering & transportsMontmorillonite0203 mechanical engineeringchemistryCeramics and CompositesComposite material0210 nano-technologyElastic modulusCivil and Structural EngineeringPolyurethaneComposite Structures
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