Search results for "hardness"

showing 10 items of 160 documents

Hardening and formation of dislocation structures in LiF crystals irradiated with MeV–GeV ions

2002

Abstract Material modifications of LiF crystals irradiated with Au, Pb and Bi ions of MeV to GeV energy are studied by means of microindentation measurements and dislocation etching. Above a critical irradiation fluence of 10 9 ions/cm 2 , the microhardness can improve by a factor of 2 in the bulk and by more than 3 on the surface. Radiation-induced hardening follows the evolution of the energy loss along the ion path. Annealing experiments indicate that complex defect aggregates created in the tracks play a major role for the hardness change. Evidence for severe structural modifications is found when etching indentation impressions in highly irradiated crystals leading to similar pattern a…

CrystalNuclear and High Energy PhysicsCrystallographyMaterials scienceAnnealing (metallurgy)Ion trackHardening (metallurgy)IrradiationDislocationInstrumentationIndentation hardnessMolecular physicsAmorphous solidNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Atmosphere-Induced Effect in Microhardness, Dislocation Mobility and Plasticity of C60and Graphite Crystals

1997

Abstract Formation of hard, brittle and toluene-insoluble near-surface layer (∼0.3 μm) of C60 crystals under atmospheric exposure was observed. Similar atmosphere-induced effect was found for graphite crystals and might also be expected for other molecular solids. Data on ageing kinetics of C60 and graphite crystals are presented. Variation of hardness with indentation depth can be described by the microhardness model for bilayer medium with different mechanical properties. Specific feature of C60 and graphite crystals is that no size effect appears in the intrinsic microhardness and dislocation mobility characteristics in the indentation depth range of 0.6–4μm.

CrystallographyBrittlenessFullereneMolecular solidMaterials scienceGeneral Chemical EngineeringBilayerIndentationGraphiteDislocationComposite materialIndentation hardnessFullerene Science and Technology
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PHOTOINDUCED HARDENING AND REDUCTION OF DISLOCATION MOBILITY IN C60SINGLE CRYSTALS: THE WAVELENGTH DEPENDENCE

2002

An increase of the microhardness and decrease of the dislocation mobility in C60 single crystals after light-irradiation in the wavelength range of 150–900nm in air has been observed giving evidence for photo-induced change in bonding. Efficiency of C60 phototransformation was found to increase with decreasing the wavelength.

CrystallographyWavelengthMaterials sciencegenetic structuresCondensed matter physicsWavelength rangeOrganic ChemistryHardening (metallurgy)General Materials Sciencesense organsPhysical and Theoretical ChemistryIndentation hardnessAtomic and Molecular Physics and OpticsFullerenes, Nanotubes and Carbon Nanostructures
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Compositional and microhardness findings in tooth affected by X-linked hypophosphatemic rickets

2020

Background This study aimed to evaluate the X-linked hypophosphatemic rickets (XLHR)-related compositional and microhardness tooth aspects. Material and Methods One affected and one non-affected teeth by XLHR were sectioned transversely, and each section was separated for Micro-Raman spectroscopy, Knoop microhardness and scanning electron microscopy with energy dispersive x-ray microanalysis (SEM-EDS). The outcomes of these analyses were assessed. Results Outcomes of Raman analysis of inorganic/organic components (~958/~1250+~1450 cm−1) and carbonate/phosphate (~1070/~958 cm−1) ratios showed areas of altered enamel and dentin (interglobular dentin, calcospherites, and mantle dentin) with an…

DentistryRicketsIndentation hardnesssymbols.namesakestomatognathic systemTooth CalcificationmedicineDentinGeneral DentistryOral Medicine and PathologyEnamel paintbusiness.industryChemistryResearch:CIENCIAS MÉDICAS [UNESCO]medicine.diseasestomatognathic diseasesHypophosphatemic Ricketsmedicine.anatomical_structurevisual_artUNESCO::CIENCIAS MÉDICASvisual_art.visual_art_mediumsymbolsKnoop hardness testbusinessRaman spectroscopyJournal of Clinical and Experimental Dentistry
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Solidification of syndiotactic polystyrene by a continuous cooling transformation approach

2007

Syndiotactic polystyrene (sPS) was solidified from the melt under drastic conditions according to a continuous cooling transformation methodology developed by the authors, which covered a cooling rate range spanning from approximately 0.03 to 3000 °C/s. The samples produced, structurally homogeneous across both their thickness and surface, were analyzed by macroscopic methods, such as density, wide-angle X-ray diffraction (WAXD), and microhardness (MH) measurements. The density was strictly related to the phase content, as confirmed by WAXD deconvolution. The peculiar behavior encountered (the density first decreasing and then increasing with the cooling rate) was attributed to the singular…

DiffractionMaterials sciencePolymers and PlasticsKineticsThermodynamicsCrystal structureContinuous cooling transformationCondensed Matter PhysicsIndentation hardnesslaw.inventionchemistry.chemical_compoundchemistrylawTacticityPolymer chemistryMaterials ChemistryPolystyrenePhysical and Theoretical ChemistryCrystallizationPolymer Crystallization Kinetics
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Use of positron annihilation measurements to detect the defect beneath worn surface of stainless steel 1.4301 (EN) under dry sliding condition

2012

Abstract Positron measurements were performed for detection of the subsurface zone in the stainless steel 1.4301 (EN) exposed to dry sliding. They revealed the defect profile induced by dry sliding which is extended inward the worn surface from 85 μm to 400 μm depending on the applied load during the tribo-test. This result was obtained using the positron techniques, while the microhardness profile exhibited shorter range of the microhardness depth profile, i.e., from 70 μm to 150 μm. However, at the depth of about 5 μm from the worn surface the sudden increase in the microhardness was observed. The complementary measurements of X-ray diffraction and SEM micrographs of the worn surface were…

DiffractionSem micrographsMaterials sciencePositronMechanics of MaterialsMetallurgyMaterials ChemistrySurfaces and InterfacesCondensed Matter PhysicsIndentation hardnessSurfaces Coatings and FilmsSliding wearPositron annihilationWear
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Analysis of the crystallization behaviour of PBT-rich PBT/PET blends under processing conditions

2007

Among the high‐performance polyesters blends PBT/PET blends are expected to exhibit remarkable properties as far as the crystallization behaviour is concerned. The solidification behaviour of a 60/40 w/w PBT/PET blend was studied in a wide range of cooling conditions, according to a Continuous Cooling Transformation (CCT) procedure developed by the authors, aiming to emulate the typical conditions encountered in polymer processing. A set of several samples characterized by an homogeneous structure was prepared by solidification from the melt through spray cooling, and the resulting structure and properties were evaluated by density, Micro Hardness (MH), Wide Angle X‐ray Diffraction (WAXD) m…

Diffractionchemistry.chemical_classificationMaterials sciencePolymerContinuous cooling transformationIndentation hardnesslaw.inventionPolyesterNatural rubberchemistrylawvisual_artvisual_art.visual_art_mediumPolymer blendCrystallizationComposite material
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Isotactic polypropylene solidification under pressure and high cooling rates. A master curve approach

2000

Solidification in industrial processes very often involves flow fields, high thermal gradients and high pressures: the development of a model able to describe the polymer behavior becomes complex. Recently a new equipment has been developed and improved to study the crystallization of polymers when quenched under pressure. An experimental apparatus based on a modified, special injection moulding machine has been employed. Polymer samples can be cooled at a known cooling rate up to 100 °C/s and under a constant pressure up to 40 MPa. Density, Micro Hardness (MH), Wide angle X-ray diffraction (WAXD), and annealing measurements were then used to characterize the obtained sample morphology. Res…

Diffractionchemistry.chemical_classificationSettore ING-IND/24 - Principi Di Ingegneria ChimicaMaterials sciencePolymers and PlasticsAnnealing (metallurgy)Crystallization of polymersMineralogy-General ChemistryPolymerIndentation hardnesschemistryTacticityThermalMaterials ChemistryInjection mouldingComposite materialPolymer Engineering & Science
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On the hardness of optimization in power-law graphs

2008

Our motivation for this work is the remarkable discovery that many large-scale real-world graphs ranging from Internet and World Wide Web to social and biological networks appear to exhibit a power-law distribution: the number of nodes y"i of a given degree i is proportional to i^-^@b where @b>0 is a constant that depends on the application domain. There is practical evidence that combinatorial optimization in power-law graphs is easier than in general graphs, prompting the basic theoretical question: Is combinatorial optimization in power-law graphs easy? Does the answer depend on the power-law exponent @b? Our main result is the proof that many classical NP-hard graph-theoretic optimizati…

Discrete mathematicsGeneral Computer ScienceVertex coverPower-law graphsGraph construction algorithmsClique (graph theory)Theoretical Computer ScienceCombinatoricsIndifference graphDominating setChordal graphIndependent setNP-hardnessCombinatorial optimizationGraph optimization problemsMaximal independent setMathematicsComputer Science(all)Theoretical Computer Science
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Effects of acids used in the microabrasion technique: microhardness and confocal microscopy analysis

2015

Background: This study evaluated the effects of the acids used in the microabrasion on enamel. Material and Methods: Seventy enamel/dentine blocks (25 mm 2 ) of bovine incisors were divided into 7 groups (n=10). Experimental groups were treated by active/passive application of 35% H 3 PO 4 (E1/E2) or 6.6% HCl (E3/ E4). Control groups were treated by microabrasion with H 3 PO 4 +pumice (C5), HCl+silica (C6), or no treatment (C7). The superficial (SMH) and cross-sectional (CSMH; depths of 10, 25, 50, and 75 μm) microhardness of enamel were analyzed. Morphology was evaluated by confocal laser-scanning microscopy (CLSM). Data were analyzed by analysis of variance (Proc Mixed), Tukey, and Dunnet…

Enamel paintChemistryConfocalResearchMineralogyOdontologíaEsthetic Dentistry:CIENCIAS MÉDICAS [UNESCO]Indentation hardnessCiencias de la saludlaw.inventionstomatognathic systemConfocal microscopylawvisual_artUNESCO::CIENCIAS MÉDICASvisual_art.visual_art_mediumGeneral DentistryNuclear chemistry
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