Search results for "Stainle"

showing 10 items of 100 documents

Effect of temperature on the passive state of Alloy 31 in a LiBr solution: Passivation and Mott-Schottky analysis

2015

The passive behaviour of Alloy 31, a highly-alloyed austenitic stainless steel (UNS N08031), has been investigated in a LiBr heavy brine (700 g/l) at different temperatures using potentiostatic polarisation and Mott-Schottky analysis. Cation vacancies have been found to be the dominant defect in the passive films formed on Alloy 31. An increase in temperature enhanced the generation of cation vacancies at the film/solution interface and raised the steady-state passive current density. The density of defects within the passive film also increased significantly with temperature, making the film more conductive and less protective against localised attacks.

CARBON-STEELAUSTENITIC STAINLESS-STEELBORATE BUFFER SOLUTIONOXIDE-FILMSINGENIERIA QUIMICAElectroquímicaPOINT-DEFECT MODELELECTRONIC-STRUCTUREREPASSIVATION KINETICSELECTROCHEMICAL-IMPEDANCE SPECTROSCOPYPOTENTIAL DISTRIBUTIONACTIVITY-COEFFICIENTSAcer Corrosió
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Galvanic deposition and characterization of brushite/hydroxyapatite coatings on 316L stainless steel

2016

In this work, brushite and brushite/hydroxyapatite (BS, CaHPO4·H2O; HA, Ca10(PO4)6(OH)2) coatings were deposited on 316L stainless steel (316LSS) from a solution containing Ca(NO3)2·4H2O and NH4H2PO4 by a displacement reaction based on a galvanic contact, where zinc acts as sacrificial anode. Driving force for the cementation reaction arises from the difference in the electrochemical standard potentials of two different metallic materials (316LSS and Zn) immersed in an electrolyte, so forming a galvanic contact leading to the deposition of BS/HA on nobler metal. We found that temperature and deposition time affect coating features (morphology, structure, and composition). Deposits were char…

Calcium PhosphatesMaterials scienceGalvanic anodeScanning electron microscopeMaterials ScienceEnergy-dispersive X-ray spectroscopyBioengineering02 engineering and technologyCondensed Matter Physicengineering.material010402 general chemistry01 natural sciencesCorrosionHydroxyapatiteBiomaterialssymbols.namesakeCoatingGalvanic cellBrushiteMechanical EngineeringMetallurgyBiomedical applicationElectrochemical Techniques021001 nanoscience & nanotechnologyStainless Steel0104 chemical sciencesGalvanic depositionDurapatiteSettore ING-IND/23 - Chimica Fisica ApplicataChemical engineeringMechanics of Materialsengineeringsymbols316LSSBrushite0210 nano-technologyRaman spectroscopy
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Electronic properties and corrosion resistance of passive films on austenitic and duplex stainless steels

2018

Abstract Passive films were grown at constant potential in acidic (pH∼2) and alkaline (pH∼13) solutions on chromium, AISI 304L, AISI 316L and Duplex stainless steels. Passive films on chromium grow following a high field mechanism considering the presence of dissolution phenomena. According to the photoelectrochemical characterization, passive films on Cr have a bandgap of 3.4 eV when formed in acidic solution, and of 2.4 eV when formed in alkaline solution due to the formation of Cr(OH)3. These films result to be poorly stable against anodic dissolution due to a very anodic flat band potential. Conversely, impedance and photoelectrochemical measurements proved that passive films on stainle…

ChromiumMaterials sciencePassivationBand gapAustenitic stainless steel020209 energyGeneral Chemical EngineeringPhotoelectrochemistryPassive filmCorrosion resistancechemistry.chemical_element02 engineering and technologyengineering.materialCorrosionChromiumPhotoelectrochemistryMott-Schottky0202 electrical engineering electronic engineering information engineeringElectrochemistryChemical Engineering (all)Austenitic stainless steelDissolutionAustenite021001 nanoscience & nanotechnologySettore ING-IND/23 - Chimica Fisica ApplicatachemistryChemical engineeringengineeringDuplex stainless steel0210 nano-technology
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Contribution to the study of physico-chemical properties of surfaces modified by last treatment : application to the enhancement of localized corrosi…

2011

Metallic materials are more and more used in severe conditions with particularly strong request for improving their behavior in aggressive environment and especially over long periods. The objective of this PhD work is to estimate the potentiality of a laser surface melting treatment on the improvement of the stainless steel 304L corrosion resistance, surface treatments by laser can be revisited on the basis of a recent change in the laser technology. In the frame of this work, a nano-pulsed laser fiber was chosen : it allows the treated surface to be melted for few microns in depth, followed by an ultra-fast solidification occuring with cooling rates up to 1011 K/s. The combination of thes…

Corrosion localiséeOxide layerSurface treatmentAciers inoxydablesStainless steels[ PHYS.COND.CM-GEN ] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]Nano-pulsed laserAcier inoxydable 304LLaser impulsionnel nanosecondeTraitement de surfaceCaractérisations physico-chimiquesLocalized corrosionRefusion de surface[CHIM.OTHE] Chemical Sciences/Other[PHYS.COND.CM-GEN] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other]Pitting resistanceLaser surface melting[PHYS.COND.CM-GEN]Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other][ CHIM.OTHE ] Chemical Sciences/OtherPhysico-chemical characterizationsCouche d’oxydePiqûrationStainless steel 304L[CHIM.OTHE]Chemical Sciences/Other
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Co-deposition and characterization of hydroxyapatite-chitosan and hydroxyapatite-polyvinylacetate coatings on 304 SS for biomedical devices

2019

During the last decades, biomaterials have been deeply studied to fabricate and improve coatings for biomedical devices. Metallic materials, especially in the orthopedic field, represent the most common materials used for different type of devices thanks to their good mechanical properties. Nevertheless, low/medium resistance to corrosion and low osteointegration ability characterizes these materials. To overcome these problems, the use of biocoatings on metals substrate is largely diffused. In fact, biocoatings have a key role to confer biocompatibility features, to inhibit corrosion and thus improve the lifetime of implanted devices. In this work, the attention was focused on Hydroxyapati…

CorrosionChitosanGalvanic depositionOrthopedic implantSettore ING-IND/24 - Principi Di Ingegneria ChimicaSettore ING-IND/23 - Chimica Fisica Applicata304 stainless steelSettore BIO/10 - BiochimicaPolyvinyl acetateSettore ING-IND/34 - Bioingegneria IndustrialeCytocompatibilityHydroxyapatite
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Studio della resistenza alla corrosione di acciai impiegati nell’industria alimentare e delle bevande

2020

In the present study we performed the physico-chemical characterization of passive films grown on different stainless steel grades after long exposure time in hot purified water (HPW). In order to get more insight into dissolution phenomena that can induce rouging on equipment materials typically involved in food and beverage industries, 304L, 316L and a super duplex 2507 SS samples were passivated at the open circuit potential by different immersion times in HPW at 60°C. Photoelectrochemical and Electrochemical Impedance measurements were performed in the attempt to correlate the electronic properties of the passive films (band gap and conductivity type) to their corrosion resistance.

CorrosionPhotoelectrochemistryEisSettore ING-IND/23 - Chimica Fisica ApplicataFood IndustryStainless SteelPassive Films
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Effect of saliva contamination on bracket failure with a self-etching primer: A prospective controlled clinical trial

2010

Introduction The aim of this study was to evaluate in vivo the effect of saliva contamination at different stages of the bonding procedure on the bond failure rate and the adhesive remaining on teeth after debonding brackets bonded with a hydrophilic self-etching primer (Transbond Plus self-etching primer [TSEP], 3M Unitek, Monrovia, Calif). Methods This was a prospective controlled clinical trial. The sample consisted of 46 patients with similar treatment plans and mechanotherapies. Stainless steel brackets (n = 531) were bonded with TSEP. The patients were divided into 2 groups: contamination with saliva before TSEP application and contamination with saliva after TSEP application. In both…

Curing Lights DentalCuspidSalivaOrthodontic BracketsSurface PropertiesDentistryOrthodonticsDental bondingDental Debondingstomatognathic systemIncisorOrthodontic WiresHumansMedicineProspective StudiesSaliva contaminationDental EnamelSalivaDental Debondingbusiness.industryBracketDental BondingStainless SteelResin CementsIncisorClinical trialstomatognathic diseasesSelf etchmedicine.anatomical_structureEquipment FailurebusinessDental AlloysFollow-Up StudiesAmerican Journal of Orthodontics and Dentofacial Orthopedics
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In vitro comparison of the retention capacity of new aesthetic brackets.

1999

Tensile bond strength and bond failure location were evaluated in vitro for two types of aesthetic brackets (non-silanated ceramic, polycarbonate) and one stainless steel bracket, using bovine teeth as the substrate and diacrylate resin as the adhesive. The results show that metallic bracket had the highest bond strength (13.21 N) followed by the new plastic bracket (12.01 N), which does not require the use of a primer. The non-silanated ceramic bracket produced the lowest bond strength (8.88 N). Bond failures occurred mainly between bracket and cement, although a small percentage occurred between the enamel-cement interface with the metal and plastic brackets and within the cement for the …

Dental Stress AnalysisCeramicsMaterials scienceOrthodontic BracketsSurface PropertiesDentistryOrthodonticsEsthetics DentalAcid Etching DentalAdhesivesTensile StrengthUltimate tensile strengthAluminum OxideAnimalsOrthodontic Appliance DesignBisphenol A-Glycidyl MethacrylateCeramicComposite materialDental EnamelCementAnalysis of VariancePolycarboxylate CementEnamel paintbusiness.industryBond strengthBrackettechnology industry and agricultureDental BondingStainless SteelSubstrate (building)visual_artvisual_art.visual_art_mediumCattleEquipment FailureAdhesiveStress MechanicalbusinessEuropean journal of orthodontics
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Shaping ability of nickel-titanium rotary instruments in simulated S-shaped root canals.

2009

Objective The aim of this study was to compare the shaping ability of 4 nickel-titanium rotary techniques and 1 hand technique in simulated S-shaped curved root canals. Study design Seventy-five simulated double-curved resin root canals were divided into 5 groups (n = 15). The canals were compared at 12 different levels and at 3 different times: before preparation and after preparation to master apical 25 and 35. Data were statistically analyzed by performing 2-by-2 comparisons with the Tukey parametric test of variance analysis using a confidence interval of 95%. Results All of the 75 resin blocks presented transportation of the root canals by transforming the apical curvature into a strai…

Dental Stress AnalysisDental InstrumentsFlexibility (anatomy)Hand techniqueRoot (chord)Normal DistributionDentistryCurvatureNickelmedicineHumansTooth RootPliabilityGeneral DentistryParametric statisticsMathematicsTitaniumAnalysis of Variancebusiness.industryStructural engineeringStainless SteelModels Dentalmedicine.anatomical_structureOtorhinolaryngologyNickel titaniumSurgeryEquipment FailureOral SurgeryDental Pulp CavitybusinessRoot Canal PreparationDental AlloysOral surgery, oral medicine, oral pathology, oral radiology, and endodontics
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Influence of prefabricated post material on restored teeth: fracture strength and stress distribution.

2006

This work studied how prefabricated intraradicular post material affects the mechanical performance of restored teeth. The effect of using two different materials (glass fiber and stainless steel) with significantly different elastic moduli was studied.A combined theoretical and experimental method was used: first, an experimental fracture strength test was performed on 60 extracted human maxillary central incisors. The teeth were decoronated, treated endodontically and restored, 30 with glass fiber posts and 30 with stainless steel posts. The data were recorded and the results compared using an ANOVA test. Then, the finite element technique was used to develop a model of the restored tooth…

Dental Stress AnalysisMaterials scienceFinite Element AnalysisDentistryMaterials testingModels BiologicalStress (mechanics)Dental MaterialsTooth Fracturesstomatognathic systemFlexural strengthMaterials TestingDentinmedicineHumansComputer SimulationGeneral DentistryElastic modulusTooth Nonvitalbusiness.industryStress distributionElasticity (physics)Stainless SteelElasticityRoot Canal Therapymedicine.anatomical_structureDental Prosthesis DesignGlassStress MechanicalbusinessToothDental AlloysPost and Core TechniqueOperative dentistry
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