Search results for "DISLOCATION"

showing 10 items of 118 documents

The Artek cup for total hip replacement of dysplastic hip joints.

2003

One specific difficulty in total hip replacement for developmental dysplasia of the hip is a shallow acetabulum with a short anteroposterior diameter. In a prospective cohort study we investigated the short-term results of the Artek cup, designed with a shallow outline and a height-reduced metal inlay for a large size 38 mm metal head, in a group of female patients with mild dysplasia of the hip.Fourteen consecutive patients with 17 dysplastic hip joints were included in the study. Their average age was 42 years. Fourteen hips had dysplasia Crowe grade I; 3 hips had dysplasia Crowe grade II. The femoral head centre was localized according to Pagnano in zone 1 in 3 cases, in zone 3 in 6 case…

Mild DysplasiaAdultReoperationmedicine.medical_specialtymedicine.medical_treatmentArthroplasty Replacement HipBone graftingProsthesis DesignFemoral headmedicineHumansOrthopedics and Sports MedicineHip Dislocation CongenitalOrthodonticsbusiness.industryGeneral MedicineMiddle Agedmedicine.diseaseAcetabulumArthroplastySurgeryRadiographymedicine.anatomical_structureTreatment OutcomeDysplasiaHarris Hip ScoreOrthopedic surgerySurgeryFemaleHip ProsthesisbusinessFollow-Up StudiesArchives of orthopaedic and trauma surgery
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An alternative formulation of the boundary element method

1982

Abstract The paper suggests an alternative formulation of the Boundary Element Method, in which singular solutions generated by unit dislocations are required and moreover the stresses at the interior points of the body are directly computed from the boundary quantities, without passing through the displacements. Relationships between the singular solutions for unit dislocation and unit force are derived.

Modelling and SimulationApplied MathematicsModeling and SimulationMathematical analysisBoundary (topology)Method of fundamental solutionsMixed boundary conditionDislocationSingular boundary methodBoundary knot methodUnit (ring theory)Boundary element methodMathematicsApplied Mathematical Modelling
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Modelling Dislocation Patterns by Molecular Dynamics

1993

Molecular dynamicsMaterials scienceCondensed matter physicsGeneral Materials ScienceDislocationCondensed Matter PhysicsAtomic and Molecular Physics and OpticsSolid State Phenomena
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Investigation of heavy ion tracks in LiF crystals by dislocation mobility method

2008

Abstract The track damage created in LiF by swift heavy ions was studied using methods of dislocation mobility and track etching. The crystals were irradiated with Bi and Pb ions of a specific energy of 11 MeV/u at fluences between 10 7 and 10 10  cm −2 . The measurements on cross-sections cleaved parallel to the irradiated surface showed continuity of the track etching for the depth up to 70% of the ion range. In deeper layers, numerous etch pits had a flat-bottomed shape indicating the discontinuities of the track structure. At this stage, a decrease of the ion-induced effect in dislocation mobility was observed. The observed reduction of the efficiency of ion tracks as obstacles for disl…

Nuclear and High Energy PhysicsCrystallographyRange (particle radiation)Materials scienceEtching (microfabrication)Ion trackTrack (disk drive)Specific energyIrradiationDislocationInstrumentationMolecular physicsIonNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Nanostructuring and strengthening of LiF crystals by swift heavy ions: AFM, XRD and nanoindentation study

2012

Abstract Modifications of the structure and micromechanical properties of LiF crystals under high-fluence irradiation (10 11 –10 13  ions cm −2 ) with swift C, Ti, Au and U ions of the specific energy of 11.1 MeV/u have been studied. In the case of heavy ions (U, Au), the AFM and SEM results reveal the bulk nanostructure consisting of columnar grains with nano-scale dimensions (50–100 nm). For lighter C ions the structure enriched with prismatic dislocation loops has been observed. High-resolution XRD reciprocal space maps for nano-structured LiF expose a mosaic-type structure with low-angle boundaries between grains.

Nuclear and High Energy PhysicsCrystallographyReciprocal latticeMaterials scienceNanostructureAtomic force microscopySpecific energyIrradiationNanoindentationDislocationInstrumentationIonNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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MeV–GeV ion induced dislocation loops in LiF crystals

2014

Abstract Formation of prismatic dislocation loops and evolution of dislocation structure in LiF crystals irradiated with swift 238U and 36S ions of specific energy 11 MeV/u at fluences up to 1013 ions cm−2 has been investigated using chemical etching and AFM. It has been shown that prismatic dislocations are formed in the stage of track overlapping above threshold fluences Φ ≈ 109 U cm−2 and Φ ≈ 1010 S cm−2. The diameter of dislocation loops reaches 600–1000 nm for 238U ions and 200 nm for 36S ions. The dislocations created by 238U ions are arranged in rows along the direction of ion beam, whereas 36S ions create freely distributed dislocation loops each of them being oriented along the ion…

Nuclear and High Energy PhysicsMaterials scienceIon beamAtomic force microscopyHardening (metallurgy)Specific energyIrradiationDislocationAtomic physicsInstrumentationIsotropic etchingIonNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Dislocation mobility study of heavy ion induced track damage in LiF crystals

2008

Track damage created in LiF crystals by swift U, Kr, Xe and Ni ions with a specific energy of 11.1 MeV/u was studied using dislocation mobility measurements, track etching, SEM, AFM and optical microscopy. The results demonstrate continuity of etching of U tracks while discontinuities of etching are observed in the case of Xe ions. The relationship between the track structure and dislocation mobility in irradiated crystals is discussed. The dislocation mobility technique can serve as a highly sensitive method for track core damage studies.

Nuclear and High Energy PhysicsMaterials science[PHYS.HEXP] Physics [physics]/High Energy Physics - Experiment [hep-ex]LiFmacromolecular substances02 engineering and technology01 natural sciencesIon tracksIonlaw.inventionPACS: 61.80.Jh; 65.72.FfCondensed Matter::Materials ScienceOptical microscopelawEtching (microfabrication)0103 physical sciences[PHYS.HEXP]Physics [physics]/High Energy Physics - Experiment [hep-ex]Specific energyInstrumentation010302 applied physicsTrack etchingIon trackTrack (disk drive)fungitechnology industry and agricultureDislocation mobility021001 nanoscience & nanotechnology[PHYS.COND.CM-MS] Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]Core (optical fiber)[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]Atomic physicsDislocation0210 nano-technologyNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Trapping of hydrogen and helium at dislocations in tungsten: anab initiostudy

2017

Retention of plasma gas components such as hydrogen (H) isotopes and helium (He) is one of the limiting factors in selection of plasma facing materials for future thermonuclear fusion devices. Tungsten (W) is one of the promising candidates for such materials and was chosen for the divertor armor for International Thermonuclear Experimental Reactor (ITER) and the first wall material for the design of the demonstrational fusion power plant - DEMO. For the analytical estimation of accumulation of H/He components in tungsten, it is important to understand the relevant physical mechanisms of their trapping in the material and thoroughly parameterize them numerically. Experiments involving high …

Nuclear and High Energy PhysicsMaterials sciencetungstenH and He in Wtrapping at dislocationAb initiohelium02 engineering and technologyDFT7. Clean energy01 natural sciences010305 fluids & plasmasCondensed Matter::Materials ScienceAb initio quantum chemistry methodsVacancy defect0103 physical sciencesAtomPhysics::Atomic PhysicsplasmaEmbedded atom modelab initiomolecular staticsCharge density021001 nanoscience & nanotechnologyCondensed Matter Physics13. Climate actionhydrogenDislocationAtomic physics0210 nano-technologyBurgers vectordislocationsNuclear Fusion
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Formation of dislocations in LiF irradiated with 3He and 4He ions

2018

Influence of the irradiation with 13.5 MeV 3He and 5 MeV 4He ions on the micro-structure and mechanical properties of LiF single crystals was studied. The depth profiles of nanoindentation, dislocation mobility, selective chemical etching and photoluminescence served for the characterization of damage. Strong ion-induced increase of hardness and decrease in dislocation mobility at the stage of track overlapping due to accumulation of dislocations and other extended defects was observed. At high fluences (1015 ions/cm2) the hardness saturates at about 3.5 GPa (twofold increase in comparison to a virgin crystal) thus confirming high efficiency of light projectiles in modifications of structur…

Nuclear and High Energy PhysicsPhotoluminescenceMaterials scienceIon-irradiation3He and 4He ionsDislocations02 engineering and technology01 natural sciencesMolecular physicsNanoindentationIonCrystal0103 physical sciences:NATURAL SCIENCES:Physics [Research Subject Categories]General Materials ScienceIrradiation010306 general physicsPhotoluminescenceLiF crystalsNanoindentationDamage beyond the ion range021001 nanoscience & nanotechnologyIsotropic etchingCharacterization (materials science)Nuclear Energy and EngineeringDislocation0210 nano-technologyJournal of Nuclear Materials
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Atlantoaxial subluxation and congenital atlas arch defect

2014

Orthodonticsbusiness.industryJoint DislocationsMiddle AgedAtlantoaxial subluxationRadiographyAtlanto-Axial JointHumansMedicineFemaleSurgeryOrthopedics and Sports MedicineNeurology (clinical)Cervical AtlasAtlas archbusinessThe Spine Journal
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