Search results for "CERAMICS"

showing 10 items of 1599 documents

Nanoscale Chemical Interaction Enhances the Physical Properties of Bioglass Composites

2013

Bioglasses are favorable biomaterials for bone tissue engineering; however, their applications are limited due to their brittleness. In addition, the early failure in the interface is a common problem of composites of bioglass and a polymer with high mechanical strength. This effect is due to the phase separation, nonhomogeneous mixture, nonuniform mechanical strength, and different degradation properties of two compounds. To address these issues, in this study a nanoscale interaction between poly(methyl methacrylate) (PMMA) and bioactive glass was formed via silane coupling agent (3-trimethoxysilyl)propyl methacrylate (MPMA). A monolith was produced at optimum composition from this hybrid …

CeramicsMaterials sciencePolymersGeneral Physics and AstronomyMicroscopy Atomic ForceMethacrylateCell Linelaw.inventionMicechemistry.chemical_compoundlawMaterials TestingCell AdhesionAnimalsNanotechnologyGeneral Materials ScienceMonolithComposite materialMethyl methacrylateDissolutionSol-gelchemistry.chemical_classificationgeographyOsteoblastsNanocompositegeography.geographical_feature_categoryGeneral EngineeringSpectrometry X-Ray EmissionCell DifferentiationPolymerchemistryBioactive glassMicroscopy Electron ScanningFemaleACS Nano
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Resistance to bond degradation between dual-cure resin cements and pre-treated sintered CAD-CAM dental ceramics

2012

Objective: To evaluate the bond stability of resin cements when luted to glass-reinforced alumina and zirconia CAD/CAM dental ceramics. Study design: Eighteen glass-infiltrated alumina and eighteen densely sintered zirconia blocks were randomly conditioned as follows: Group 1: No treatment; Group 2: Sandblasting (125 µm Al2O3-particles); and Group 3: Silica-coating (50 µm silica-modified Al2O3-particles). Composite samples were randomly bonded to the pre-treated ceramic surfaces using different resin cements: Subgroup 1: Clearfil Esthetic Cement (CEC); Subgroup 2: RelyX Unicem (RXU); and Subgroup 3: Calibra (CAL). After 24 h, bonded specimens were cut into 1 ± 0.1 mm2 sticks. One-half of th…

CeramicsMaterials scienceScanning electron microscopeComposite numberchemistry.chemical_elementDental bondingClinical and Experimental DentistryMaterials TestingAluminum OxideCubic zirconiaCeramicComposite materialGeneral DentistryCementZirconiumBond strengthDental Bonding:CIENCIAS MÉDICAS [UNESCO]Resin CementsOtorhinolaryngologychemistryvisual_artUNESCO::CIENCIAS MÉDICASvisual_art.visual_art_mediumComputer-Aided DesignSurgeryResearch-ArticleGlassZirconiumMedicina Oral, Patología Oral y Cirugía Bucal
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Bond strength evaluation of the veneering-core ceramics bonds.

2009

The purpose of this study was to determine whether the bond of veneering porcelain to a ceramic core in bilayered ceramics was similar to that of the metal ceramic control of well known behaviour. Six groups of nine specimens each were fabricated, whose dimensions were 15 mm long and 8 mm in diameter at the core, and 2 mm long and 8 mm in diameter for the veneer. The groups were GR. 1 (control group): CrNi alloy/d.SIGN (Ivoclar), GR. 2: IPS e.maxPress/IPS e.maxCeram (Ivoclar), GR. 3: IPS e.maxZirCad/ IPS e.maxZirPress (Ivoclar), GR. 4: IPS e.maxZirCad/IPS e.maxCeram (Ivoclar), GR. 5: Lava Frame (3M ESPE)/ Lava Ceram (3M ESPE) and GR. 6: Lava Frame (3M ESPE)/IPS e.maxCeram (Ivoclar). A shear…

CeramicsMaterials scienceShear strength testmedicine.medical_treatmentMateriales dentalesOdontologíaCIENCIA DE LOS MATERIALES E INGENIERIA METALURGICAmedicineCeramicComposite materialGeneral DentistryBond strengthUniversal testing machineBond strengthDental Bonding:CIENCIAS MÉDICAS [UNESCO]CeramicCore (optical fiber)Dental VeneersOtorhinolaryngologyvisual_artUNESCO::CIENCIAS MÉDICASShear testvisual_art.visual_art_mediumZirconiaSurgeryVeneerAdhesiveDirect shear testMedicina oral, patologia oral y cirugia bucal
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Microstructure and mechanical effects of spark plasma sintering in alumina monolithic ceramics

2013

The specific effects of spark plasma sintering (SPS) on the creep behavior, microstructure and mechanical properties of alumina monolithic ceramic were investigated. SPS introduces strains that concentrate at grain boundaries and inhibit crack growth, resulting in an improvement in the flexural strength and fracture toughness. However, creep blocks grain boundary movements and decreases the reliability of the material. These strains can be removed by a post-sintering thermal treatment, which plays an important role in the distribution of dislocations.

CeramicsMaterials scienceSpark plasma sinteringDislocationsMechanical propertiesThermal treatmentFracture toughnessFlexural strengthCIENCIA DE LOS MATERIALES E INGENIERIA METALURGICAGeneral Materials ScienceCeramicComposite materialMechanical EngineeringfungiMetals and Alloystechnology industry and agriculturefood and beveragesCondensed Matter PhysicsMicrostructureequipment and suppliesCreepMechanics of Materialsvisual_artvisual_art.visual_art_mediumGrain boundaryHigh-temperature deformationTransmission electron microscopy
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Influence of the chemical composition of monolithic zirconia on its optical and mechanical properties. Systematic review and meta-regression.

2021

Este artículo se encuentra disponible en la siguiente URL: https://www.jstage.jst.go.jp/article/jpr/66/2/66_JPR_D_20_00218/_pdf/-char/en Este artículo de investigación pertenece al número especial "Advances in Personalized Nursing Care". Purpose: This systematic review set out to investigate the influence of chemical composition and specimen thickness of monolithic zirconia on its optical and mechanical properties. Meta-analysis and meta-regression analyzed the effects of variations in percentages of yttrium, aluminum, and specimen thickness of monolithic zirconia. Study selection: The review followed recommendations put forward in the PRISMA checklist. An electronic search for relevant art…

CeramicsMaterials scienceWeb of scienceSurface Properties0206 medical engineeringDentistry02 engineering and technology03 medical and health sciencesDental Materials0302 clinical medicineMaterials TestingDentistry (miscellaneous)Meta-regressionCubic zirconiaYttriumCirconio - Propiedades mecánicas.Zirconium - Optical properties.business.industryMonolithic zirconia030206 dentistryCirconio - Propiedades ópticas.020601 biomedical engineeringZirconium - Mechanical properties.ZirconiumOral SurgerybusinessAluminumJournal of prosthodontic research
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Full maxillary rehabilitation with an all-ceramic system

2009

With the appearance of all-ceramic systems, providing a choice of framework porcelains and allowing the same material to be used for the veneer, it is now possible to select the ideal structure in terms of both function and esthetics. Silicate ceramics allow porcelain laminate veneers and crowns to be used in the anterior region, providing excellent esthetics; while for the posterior area, where function takes precedence, oxide ceramics, specifically zirconium oxide, are preferred. The IPS e.max ceramic system, heir apparent to the IPS Empress 2 system, combines the advantages of zirconium oxide ceramics (IPS e.max Zircad) with the excellent esthetic qualities of silicate ceramics (IPS e.ma…

CeramicsOxide ceramicsAll ceramicDenture PartialComputer sciencemedicine.medical_treatmentMechanical engineeringDentistryAnterior regionMaxillamedicineHumansCeramicGeneral DentistryCrownsbusiness.industryMiddle Aged:CIENCIAS MÉDICAS [UNESCO]Otorhinolaryngologyvisual_artUNESCO::CIENCIAS MÉDICASZirconium oxidevisual_art.visual_art_mediumSurgeryVeneerClinical casebusinessMedicina Oral Patología Oral y Cirugia Bucal
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Effects of femtosecond laser and other surface treatments on the bond strength of metallic and ceramic orthodontic brackets to zirconia.

2017

Femtosecond laser has been proposed as a method for conditioning zirconia surfaces to boost bond strength. However, metallic or ceramic bracket bonding to femtosecond lasertreated zirconia surfaces has not been tested. This study compared the effects of four conditioning techniques, including femtosecond laser irradiation, on shear bond strength (SBS) of metallic and ceramic brackets to zirconia.Three hundred zirconia plates were divided into five groups: 1) control (C); 2) sandblasting (APA); 3) silica coating and silane (SC); 4) femtosecond laser (FS); 5) sandblasting followed by femtosecond laser (APA+SC). A thermal imaging camera measured temperature changes in the zirconia during irrad…

CeramicsScanning electron microscopeOrthodontic Bracketslcsh:MedicineTissue AdhesionsCoating Materials030207 dermatology & venereal diseases0302 clinical medicineMedicine and Health SciencesSilaneElectron MicroscopyCubic zirconiaCeramicZirconium oxideComposite materiallcsh:ScienceMicroscopyMultidisciplinaryBond strengthBracketTemperatureOptical EquipmentMetalsvisual_artPhysical SciencesFemtosecondvisual_art.visual_art_mediumEngineering and TechnologyScanning Electron MicroscopyShear StrengthResearch ArticleMaterials scienceMaterials by StructureMaterials ScienceOral MedicineEquipmentOrthodonticsResearch and Analysis MethodsENPEP gene03 medical and health sciencesCoatingsAdhesivesShear strengthMaterials by AttributeUniversal testing machineSurface TreatmentsLaserslcsh:R030206 dentistryManufacturing ProcessesMicroscopy Electron Scanninglcsh:QZirconiumPLoS ONE
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Fracture resistance and the mode of failure produced in metal-free crowns cemented onto zirconia abutments in dental implants.

2019

The purpose of the investigation was to analyze fracture resistance and mode of failure of zirconium oxide (zirconia) abutments placed on dental implants bearing crowns of different esthetic materials: zirconia, lithium disilicate (LDS), and nano-ceramic resin, for replacing single teeth in the anterior sector. Eighty implant-abutment-crown units were divided into four groups: Group T-MC (control): 20 metal-ceramic crowns cemented onto titanium abutments; Group Z-Z: 20 zirconia crowns on zirconia abutments; Group Z-LD: 20 lithium disilicate crowns on zirconia abutments; and Group Z-NCR: 20 nano-ceramic resin crowns on zirconia abutments. Specimens underwent a fatiguing process (dynamic load…

CeramicsTeethMedical Implantsmedicine.medical_treatmentDentistry02 engineering and technologyMaterial Fatigue0302 clinical medicineMaterials PhysicsMaterials TestingMedicine and Health SciencesCubic zirconiaDental Restoration FailureMaterialsDental CementumTitaniumProstheticsMultidisciplinaryCrownsPhysicsQRClassical Mechanics021001 nanoscience & nanotechnologyChemistryPhysical SciencesMedicineEngineering and TechnologyAnatomy0210 nano-technologyTitaniumResearch ArticleBiotechnologyChemical ElementsMaterials scienceScienceBiomaterial ImplantsMaterials ScienceAbutmentchemistry.chemical_elementBioengineeringLithiumCrown (dentistry)Anterior region03 medical and health sciencesmedicineHumansTitanium ImplantsDental ImplantsDamage Mechanicsbusiness.industryBiology and Life Sciences030206 dentistryDental PorcelainAssistive TechnologieschemistryMetal freeJawFracture (geology)Zirconium oxideMedical Devices and EquipmentZirconiumbusinessDigestive SystemHeadPloS one
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Bioactive Glass-Ceramics in Middle Ear Surgery An 8-Year Review

1988

An 8-year follow-up of Ceravital middle ear prostheses showed there was extremely good tolerance in the middle ear space. Incompatibility phenomena were not observed, and inflammatory reactions were neither caused nor supported by the implants. The tympanoplasties were always performed without interposition of cartilage between the tympanic membrane or the tympanic membrane graft and the disk-shaped portion of the implant, and extrusions were never observed. Long-lasting inflammatory processes appeared to destroy implants the same way they destroy ossicles. Transient inflammatory periods (such as episodes of purulent otitis media, which occurred soon after the prostheses were implanted) did…

CeramicsTympanic MembraneChemical PhenomenaEar MiddleDentistryBiocompatible MaterialsProsthesis DesignEpitheliumGeneral Biochemistry Genetics and Molecular Biologylaw.inventionHistory and Philosophy of SciencelawmedicineHumansOssiclesChemistry Physicalbusiness.industryGeneral NeuroscienceCartilageOssicular Prosthesismedicine.anatomical_structureHearing resultsMiddle ear surgeryBioactive glassMiddle earImplantPurulent Otitis MediabusinessEar CanalAnnals of the New York Academy of Sciences
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BIOACTIVE GLASS CERAMIC

1983

The practicability of the bioactive glass ceramic Cernvitnl® in ear surgery was tested in animals. The histological findings are presented. Over the last 3 years implants of bioactive glass ceramic were used in humans. Prostheses for the total or partial reconstruction of the ossicular chain and the reconstruction of the bony wall of the outer ear canal were fashioned. We have conducted about 300 tympanoplasties and 60 total or partial reconstructions of the bony wall of the outer ear canal. The otoscopic and functional results were satisfactory.

CeramicsTympanic Membranemedicine.medical_treatmentHearing Loss ConductiveDentistryBiocompatible Materialslaw.inventionTympanoplastyOsteogenesislawotorhinolaryngologic diseasesmedicineOuter earAnimalsHumansCeramicEar OssiclesOssicular chainbusiness.industryProstheses and ImplantsTympanoplastymedicine.anatomical_structureOtorhinolaryngologyBioactive glassvisual_artvisual_art.visual_art_mediumGlassRabbitssense organsbusinessEar CanalThe Laryngoscope
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