Search results for "SUPERELASTICITY"

showing 2 items of 2 documents

Effect of temperature on the orthodontic clinical applications of NiTi closed-coil springs

2013

NiTi spring coils were used to obtain large deformation under a constant force. The device consists on a NiTi coil spring, superelastic at body temperature, in order to have a stress plateau during the austenitic retransformation during the unloading. The temperature variations induced changes in the spring force. Objectives: The aim of this study is to investigate the effect of the temperature variations in the spring forces and corrosion behaviour simulating the ingestion hot/cold drinks and food. Study D esign: The springs were subjected to a tensile force using universal testing machine MTS-Adamel (100 N load cell). All tests were performed in artificial saliva maintained at different t…

Materials scienceElasticidadOrtodòncia616.3OdontologíaOrthodontics:Enginyeria dels materials [Àrees temàtiques de la UPC]Load cellNiTiCorrosionPhysical PhenomenaStress (mechanics)RecoveryMaterials TestingBiomaterials and Bioengineering in DentistryOrthodontic WiresOrthodonticComposite materialSuperelasticitySalivaGeneral DentistryUniversal testing machineElasticitatTemperatureNíquel-titani -- AliatgesCoilsTemperatura:CIENCIAS MÉDICAS [UNESCO]Coil springCiencias de la saludElasticityOrtodonciaNickel-titanium alloysSpringsOtorhinolaryngologySpring (device)Nickel titaniumPseudoelasticityUNESCO::CIENCIAS MÉDICASResearch-ArticleSurgery
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On the high-pressure phase stability and elastic properties ofβ-titanium alloys

2017

We have studied the compressibility and stability of different β-titanium alloys at high pressure, including binary Ti–Mo, Ti–24Nb–4Zr–8Sn (Ti2448) and Ti–36Nb–2Ta–0.3O (gum metal). We observed stability of the β phase in these alloys to 40 GPa, well into the ω phase region in the P–T diagram of pure titanium. Gum metal was pressurised above 70 GPa and forms a phase with a crystal structure similar to the η phase of pure Ti. The bulk moduli determined for the different alloys range from 97  ±  3 GPa (Ti2448) to 124  ±  6 GPa (Ti–16.8Mo–0.13O).

phase stabilityMECHANISMMaterials scienceFluids & Plasmas0204 Condensed Matter PhysicsThermodynamicschemistry.chemical_element02 engineering and technologyCrystal structure01 natural sciencestitanium alloysPhase (matter)0103 physical sciencesGeneral Materials Sciencetitanium0912 Materials EngineeringSUPERELASTICITY010302 applied physicsScience & Technology1007 NanotechnologyPhase stabilityPhysicsDiagramMetallurgyGum metal021001 nanoscience & nanotechnologyCondensed Matter PhysicsTI-24NB-4ZR-8SNSTATEMARTENSITIC-TRANSFORMATIONPhysics Condensed Matterdiamond anvil cellchemistryMETALHigh pressurePhysical SciencesCompressibilityTI0210 nano-technologybiomaterialsTitaniumJournal of Physics: Condensed Matter
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