Search results for "plastic"

showing 10 items of 7296 documents

Structure–Property Relationships in Bionanocomposites for Pipe Extrusion Applications

2021

In this work, bionanocomposites based on different biodegradable polymers and two types of nanofillers, namely a nanosized calcium carbonate and an organomodified nanoclay, were produced through melt extrusion, with the aim to evaluate the possible applications of these materials as a potential alternative to traditional fossil fuel-derived polyolefins, for the production of irrigation pipes. The rheological behavior of the formulated systems was thoroughly evaluated by exploiting different flow regimes, and the obtained results indicated a remarkable effect of the introduced nanofillers on the low-frequency rheological response, especially in nanoclay-based bionanocomposites. Conversely, t…

Work (thermodynamics)Materials scienceBiopolymerPolymers and Plasticsbionanocompositesrheological behaviorStructure propertybiopolymersGeneral Chemistrymechanical propertiesBiodegradable polymerArticleShear ratelcsh:QD241-441Settore ING-IND/22 - Scienza E Tecnologia Dei MaterialiRheologylcsh:Organic chemistrybionanocompositemechanical propertieExtrusionbiopolymers; bionanocomposites; rheological behavior; mechanical properties; processabilityComposite materialDuctilityElastic modulusprocessabilityPolymers
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A thermodynamically consistent cohesive-frictional interface model for mixed mode delamination

2016

Abstract A new interface constitutive model based on damage mechanics and frictional plasticity is presented. The model is thermodynamically consistent, it is able to accurately reproduce arbitrary mixed mode debonding conditions and it is proved that the separation work is always bounded between the fracture energy in mode I and the fracture energy in mode II. Analytical results are given for proportional loading paths and for two non-proportional loading paths, confirming the correct behavior of the model for complex loading histories. Numerical and analytical solutions are compared for three classical delamination tests and frictional effects on 4ENF are also considered.

Work (thermodynamics)Materials scienceConstitutive equation02 engineering and technologyPlasticity01 natural sciencesThermodynamic0203 mechanical engineeringDamage mechanicsMechanics of MaterialGeneral Materials Science0101 mathematicsComposite materialSettore ING-IND/15 - Disegno E Metodi Dell'Ingegneria IndustrialeMechanical EngineeringCohesive-frictional interfaceDelaminationMode (statistics)Fracture mechanicsMechanicsStrength of materials010101 applied mathematics020303 mechanical engineering & transportsMechanics of MaterialsMixed-mode delaminationMaterials Science (all)Settore ICAR/08 - Scienza Delle CostruzioniEngineering Fracture Mechanics
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Limit analysis of a beam in bending immersed in an elastoplastic medium

1968

The behavior of the beam-soil system is examined within the scope of the bilateral schematization of ideal elastoplastic bodies, in the following work stages; the expression for the limit load is supplied for each stage: Two peculiar features of the problem are highlighted:1) the “plastic hinge migration” phenomenon, due to the elastic unloading of the material, and2) the successive propagation of plastification in the soil which, being related to the displacement of the hinges in the beam, leads to the identification of the collapse mechanism of the systme.

Work (thermodynamics)Materials scienceLimit analysisMechanics of MaterialsMechanical EngineeringPlastic hingeHingeLimit loadBendingMechanicsCondensed Matter PhysicsDisplacement (fluid)Beam (structure)Meccanica
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A computational framework for low-cycle fatigue in polycrystalline materials

2021

Abstract A three-dimensional framework for low-cycle fatigue analysis of polycrystalline aggregates is proposed in this work. First, a cohesive law coupling plasticity and damage is developed for modelling cycle-by-cycle degradation of material interfaces up to complete de-cohesion and failure. The law may model both quasi-static degradation under increasing monotonic load and degradation under cyclic loading, through a coupled plasticity-damage model whose activation and flow rules are formulated in a thermodynamically consistent framework. The proposed interface laws have been then implemented and coupled with a multi-region boundary element formulation, with the aim of analysing low-cycl…

Work (thermodynamics)Materials scienceMechanical EngineeringFlow (psychology)Computational MechanicsGeneral Physics and AstronomyMicromechanicsMonotonic functionMechanicsPlasticityIntergranular corrosionComputer Science ApplicationsMechanics of MaterialsBoundary Element method Cohesive Zone Modelling Low-cycle fatigue Multiscale Materials Modelling Polycrystalline materialsDegradation (geology)Coupling (piping)Settore ING-IND/04 - Costruzioni E Strutture Aerospaziali
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The interphase model applied to the analysis of masonry structures

2014

Abstract Masonry material presents a mechanical response strongly dependent on the static and kinematic phenomena occurring in the constituents and at their joints. At the mesoscopic level the interaction between the units is simulated by means of specific mechanical devices such as the zero thickness interface model where the contact tractions and the displacement discontinuities are the primary static and kinematic variables respectively. In many cases the joint response depends also on internal stresses and strains within the interface layer adjacent to the joint interfaces. The introduction of internal stresses and strains leads to the formulation of the interphase model, a sort of enha…

Work (thermodynamics)Materials sciencePlasticityComputational MechanicsGeneral Physics and Astronomysymbols.namesakemedicineMasonryJoint (geology)Interphasebusiness.industryMechanical EngineeringStructural engineeringMechanicsMasonryFinite element methodComputer Science ApplicationsDamageMechanics of MaterialsJoint stiffnessHelmholtz free energysymbolsInterphasemedicine.symptombusinessSettore ICAR/08 - Scienza Delle CostruzioniDisplacement (fluid)
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Mechanisms of polymer crystallization from flowing solutions

1978

The recent experimental results on flow-induced crystallization by Pennings and coworkers show that extremely rigid polyethylene fibers can be obtained in a shear flow. On the other hand, the mechanism by which these flow-induced crystals are produced is still open to investigation. In this work a few aspects of fibrous crystal growth are theoretically investigated. The molecular dynamics of chains partly attached to the crystal and partly immersed in the solution is considered. The influence of temperature and of geometrical factors is also discussed.

Work (thermodynamics)Materials sciencePolymers and PlasticsCrystallization of polymersPhysics::OpticsCrystal growthGeneral ChemistryPolyethylenelaw.inventionCrystalMolecular dynamicschemistry.chemical_compoundchemistrylawChemical physicsPolymer chemistryMaterials ChemistryCrystallizationShear flowPolymer Engineering and Science
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Determination of the apparent activation energy of dielectric relaxation phenomena by means of the representation of ε” as a function of T at constan…

1984

Abstract The main purpose of this work is to justify the use of the positions of the maxima of e” versus T curves when calculating the apparent activation energy in secondary dielectric relaxations or in the relaxation associated with the glass transition. To exemplify this, phenomenological models as well as experimental results for methacrylic polymers are discussed.

Work (thermodynamics)Materials sciencePolymers and PlasticsThermodynamicsGeneral ChemistryDielectricActivation energyCondensed Matter PhysicsCondensed Matter::Soft Condensed MatterNuclear magnetic resonanceMaterials ChemistryRelaxation (physics)Dielectric lossGlass transitionMaximaCole–Cole equationJournal of Macromolecular Science, Part B
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Linear versus Three-Arm Star Polybutadiene: Effects of Polymer Architecture on the Thermodynamic Solution Behavior

2012

The interaction of linear and of three-arm star polybutadiene (PB) with THF was studied in the temperature range between 25 and 55 °C. Information for dilute solution rests on light scattering experiments; Flory–Huggins interaction parameter χ stem from vapor pressure measurements as a function of φ, the volume fraction of polymer. Despite the minute divergence in the architecture, the second osmotic virial coefficients of the two PBs differ noticeably. The present work demonstrates that these disparities become much more pronounced as φ increases and that they depend strongly on temperature. These findings are interpreted on the basis of an approach accounting for the effects of chain conn…

Work (thermodynamics)Materials sciencePolymers and PlasticsVapor pressureOrganic ChemistryThermodynamicsPolymer architectureFlory–Huggins solution theoryLight scatteringInorganic ChemistryPolybutadieneVirial coefficientVolume fractionPolymer chemistryMaterials ChemistryMacromolecules
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Experimental and numerical study of composite T-joints for marine application

2010

Abstract The aim of this work was to study the behaviour of composite T-joints used in marine applications. The effect of several parameters was investigated. In particular, three configurations were studied; i.e. with adhesive and with two different over-laminations. Moreover, the joined sections were made of different materials. These joints were subjected to a tensile load in the plane of the sheet. To quantify the effect of different designs on the strength, a variance analysis was performed. Finally, a numerical model was developed using a commercial finite element code (Ansys).

Work (thermodynamics)Materials sciencePolymers and Plasticsbusiness.industryPlane (geometry)General Chemical EngineeringComposite numberStructural engineeringFinite element stress analysisBiomaterialsUltimate tensile strengthAdhesiveComposite materialFinite element codebusiness
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The global cracking laws for a finite-element model of no-tension material

1992

Abstract For perfect no-tension materials (NRT) the validity of the local stability postulate of Drucker, well known in plasticity, has been assumed so far and utilized to derive the local cracking laws, which relate cracking strain states and stress states to each other. On this base a finite-element (FE) model with suitable constitutive behaviour for the single FE is presented. Classical FE approaches enforce the cracking laws at the Gauss points of the FEs. In this work it is shown that taking into account cracking strains, suitably modelled, over the whole domain of the FE and making use of an energy approach lead to general cracking laws describing the constitutive behaviour of the who…

Work (thermodynamics)Materials scienceTension (physics)business.industryApplied MathematicsMechanical EngineeringFracture mechanicsPlasticityMasonryFinite element methodStress (mechanics)CrackingMechanics of MaterialsLawbusinessInternational Journal of Non-Linear Mechanics
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