Search results for "Creep"

showing 10 items of 167 documents

Characterization of a fiber-reinforced new fully aromatic liquid crystalline polymer

1998

A new rigid liquid crystalline polymer that demonstrates good mechanical and thermomechanical properties and acceptable processing temperature has been recently synthesized and characterized. The melting temperature and some thermomechanical properties do not seem, however, suitable for use in some applications at high temperature or in the presence of aggressive fluids. The use of appropriate inorganic fillers can overcome these shortcomings. In this work the new LCP, polymerized in a bench-scale apparatus, and the same sample filled with carbon fibers are characterized. The properties of the carbon fiber filled LCP are compared with those of another filled wholly aromatic commercial LCP,…

chemistry.chemical_classificationFiller (packaging)Materials scienceCarbon fiber reinforced plastics Composition effects Creep Glass fiber reinforced plastics Thermal effects Semirigid liquid crystalline polymersThermomechanical properties Liquid crystal polymersLiquid crystallineMelting temperature02 engineering and technologyPolymer021001 nanoscience & nanotechnologyCondensed Matter PhysicsCharacterization (materials science)020303 mechanical engineering & transportsSettore ING-IND/22 - Scienza E Tecnologia Dei Materiali0203 mechanical engineeringchemistryPolymerizationThermalCeramics and CompositesA fibersComposite material0210 nano-technology
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Effect of carboxymethyl cellulose concentration on rheological behavior of milk and aqueous systems. A creep and recovery study

2009

Carboxymethyl cellulose (CMC) is an anionic polysaccharide used mainly as stabilizer and thickener agent. The purpose of this study was to investigate the effect of CMC concentration on viscoelasticity of dairy and aqueous model systems through the analysis of creep and recovery tests. The viscoelastic properties of different concentrations of CMC (0.75, 1.00, 1.25, and 1.50% w/w) in two milk systems (skimmed milk and whole milk) were compared with those of the same concentration of biopolymer in aqueous solution. Creep curves were fitted to a six parameter mechanical model (Burger + Kelvin-Voigt), whereas an empirical equation was used for recovery. The creep and recovery properties of sam…

chemistry.chemical_classificationMaterials scienceAqueous solutionfood.ingredientChromatographyPolymers and Plasticsfood and beveragesGeneral Chemistryengineering.materialPolysaccharideViscoelasticitySurfaces Coatings and FilmsCarboxymethyl cellulosefluids and secretionsfoodchemistryCreepChemical engineeringRheologySkimmed milkMaterials ChemistrymedicineengineeringBiopolymermedicine.drugJournal of Applied Polymer Science
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Creep and recovery experimental investigation of low oil content food emulsions

2008

Abstract Creep and recovery tests have been performed to study the viscoelastic behavior of low oil content food emulsions. Formulations of salad dressings usually include modified starch (MS) due to its low cost and the special creamy texture if affords. The combination of starch with other natural gums may improve the quality of the product. A reference emulsion containing 4% MS, and four other formulations in which the starch was partially replaced by xanthan gum (XG), locust bean gum (LBG) and two synergistic blends of these gums were formulated. Gels prior to emulsification were studied for comparative purposes. The viscoelastic behavior of all the systems was characterized by means of…

chemistry.chemical_classificationMaterials scienceChromatographyStarchGeneral Chemical EngineeringGeneral ChemistryPolysaccharideViscoelasticityModified starchchemistry.chemical_compoundCreepchemistryEmulsionmedicineLocust bean gumComposite materialXanthan gumFood Sciencemedicine.drugFood Hydrocolloids
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A simplified description of viscoelastic behavior of polymers as illustrated with biaxially-oriented poly(ethylene terephthalate)

1978

A rheological model of solid polymers is proposed. Its mechanical analog is a parallel of a linear spring and a Maxwell element with variable viscosity. The viscosity of the dashpot is allowed to change with stress both directly, by an Eyring-type mechanism, and through free volume changes according to the Doolittle equation. Predictions of the model reproduce many of the features shown, especially after yielding, by constant velocity stress-strain, stress-relaxation and creep data taken at room temperature on biaxially-oriented poly(ethylene terephthalate) over a wide range of loading rates.

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsGeneral ChemistryPolymerDashpotViscoelasticityStress (mechanics)ViscosityRheologychemistryCreepSpring (device)Materials ChemistryComposite materialPolymer Engineering and Science
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Master curves of viscoelastic behavior in the plastic region of a solid polymer

1977

Stress relaxation and creep tests following strain ramps were made on Mylar, both above and below the yield stress. The ramp velocity was varied over a 40-fold range. All data exhibit nonlinear viscoelastic behavior. However, those obtained above the yield point, i.e., in the plastic region, could be reduced to single master curves for both the creep and the relaxation tests by means of a simple time shift factor. This factor is inversely proportional to the strain rate existing just prior to the test.

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsStrain (chemistry)General ChemistryPolymerStrain rateViscoelasticitySurfaces Coatings and FilmsNonlinear systemchemistryCreepMaterials ChemistryStress relaxationForensic engineeringRelaxation (physics)Composite materialJournal of Applied Polymer Science
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Effects of filler type and mixing method on the physical properties of a reinforced semirigid liquid crystal polymer

1996

Semirigid liquid crystalline polymers (LCPs) show some advantages with respect to rigid LCP: in particular lower processing temperatures, better compatibility with flexible thermoplastics, but also some disadvantages. Thermal resistance of rigid LCPs is much better and the maximum working temperature is, in general, very high. The thermomechanical properties can be improved by adding inorganic fillers. In this work processing, mechanical and thermomechanical properties of a filled semirigid liquid crystal copolyester are reported. Several inorganic fillers have been used in order to put in evidence the influence of shape and dimensions of the particles on the properties of the filled materi…

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsThermal resistanceOrganic ChemistryGlass fiberGeneral Physics and AstronomyMECHANICAL-PROPERTIESPolymerBLENDSCopolyesterSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiTHERMOTROPIC POLYESTERINJECTION MOLDINGSchemistryCreepLiquid crystalUltimate tensile strengthMaterials ChemistryFLEXIBLE SPACERComposite materialElastic modulusEuropean Polymer Journal
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LARGE DEFORMATION CREEP BEHAVIOR OF A SOLID POLYMER.

1981

Abstract The effect of loading rate and strain on the creep behavior after sample yielding has been studied in previous communications (14–15) for Mylar in tension and for Lexan in compression. In this work the creep behavior of Lexan samples previously elongated is considered both in tension and in compression. A procedure which collects all the data independently of both loading rate and initial creep strain is proposed.

chemistry.chemical_classificationWork (thermodynamics)Large deformationMaterials sciencePolymers and PlasticsTension (physics)General Chemical EngineeringDiffusion creepPolymerCompression (physics)Analytical ChemistrychemistryCreepLoading rateComposite material
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A new equipment to measure the combined effect of humidity, temperature, mechanical stress and UV exposure on the creep behaviour of polymers

2008

To be able to study and predict the physical properties of a polymeric material under different environmental conditions is very important. Moisture, UV irradiation, thermal and mechanical stresses can dramatically change the characteristics of the material and hinder some specific applications. In this work, a new equipment able to perform creep tests under different environmental conditions (temperature, humidity, stress) is presented. Some preliminary results are also presented using a sample of polyamide 6. As this polymer is sensitive to all these variables, it is appropriate to verify the effectiveness of the new instrument.

chemistry.chemical_classificationWork (thermodynamics)Materials sciencePolymers and PlasticsMoistureOrganic ChemistryHumidityPolymerAgeing New equipment Photo degradation Creep UV exposure Humidity effectsStress (mechanics)chemistryCreepThermalIrradiationComposite material
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Mechanical properties of injection-molded binary blends of polyethylene with small additions of a liquid-crystalline polymer

2011

The results of the investigation of the mechanical properties of polyethylene (PE) blends with small (<3 wt %) additions of thermotropic liquid-crystalline polymers (LCPs) are reported. PE/LCP compositions with various LCP weight contents were obtained by thermoplastic mixing in a two-stage process. Short-term and long-term mechanical behavior of various PE/LCP compositions were analyzed. Data on the influence of LCP addition on the tensile elastic modulus [or Young's modulus (E)], stress at yield (σY), stress at break (σB), strain at yield, strain at break, and deformation at long-term (1000-h) tensile creep were obtained. The experimental results of the investigation show that even small …

chemistry.chemical_classificationYield (engineering)ThermoplasticMaterials sciencePolymers and PlasticsGeneral ChemistryPolymerPolyethyleneSurfaces Coatings and Filmschemistry.chemical_compoundchemistryCreepUltimate tensile strengthMaterials ChemistryComposite materialDeformation (engineering)Elastic modulusJournal of Applied Polymer Science
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Mechanical properties and XRD of Nafion modified by 2-hydroxyethylammonium ionic liquids

2013

In this work, the Nafion 112 membrane impregnated with 2-hydroxyethylammonium carboxylate ionic liquids have been investigated. The used ionic liquids were 2-hydroxyethylammonium formate [HEA]F, acetate [HEA]A and lactate [HEA]L. Prepared composite membranes Nafion/ionic liquid are characterized by mechanical testing, such as tensile test and creep test. It is found that ionic liquids decrease elastic modulus and creep compliance, but do not have significant effect on the tensile strength. Also, composite membranes were studied by wide angle X-ray diffraction. All ionic liquids shift the peak maximum to the lower angle. In this work, only biodegradable ionic liquids were used for composite …

chemistry.chemical_compoundMembraneMaterials sciencechemistryCreepNafionUltimate tensile strengthIonic liquidComposite numberComposite materialElastic modulusTensile testingIOP Conference Series: Materials Science and Engineering
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