Search results for "MINERALOGY"

showing 10 items of 1516 documents

The preparation and thermal evolution of polymeric gels with garnet stoichiometry in the CaOAl2O3SiO2 and CaOCr2O3SiO2 systems

1990

Abstract The synthesis of gels with garnet stoichiometry in the CaOAl 2 O 3 SiO 2 and CaOCr 2 O 3 SiO 2 systems and their evolution in thermal processing have been studied. Dried gels with the stoichiometry 3CaO.Al 2 O 3 .3SiO 2 show a homogeneous aspect without detectable crystalline phase. The thermal evolution of these gels indicates no formation of grossularite at temperatures up to 1000°C after 12 h. In the uvarovite garnet samples, 3CaO.Cr 2 O 3 .3SiO 2 , a small amount of crystalline phase was detected in the dried gels. The homogeneity of the gels was checked by scanning electron microscropy. The infrared study of these polymeric gels confirmed the presence of SiOMe (MeCr 3+ …

Materials scienceChemical engineeringInfraredScanning electron microscopeUvarovitePhase (matter)Homogeneity (physics)Materials ChemistryCeramics and CompositesInfrared spectroscopyMineralogyMicrostructureStoichiometryJournal of the European Ceramic Society
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Radiowave emission accompanying the phase changes and chemical reactions in condensed phases

1994

Materials scienceChemical physicsPhase (matter)MineralogyGeneral Materials ScienceInstrumentation (computer programming)Chemical reactionRadio waveJournal of Materials Science Letters
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The pore structure of compacted and partly saturated MX-80 bentonite at different dry densities

2014

Compacted MX-80 bentonite is a potential backfill material in radioactive-waste repositories. Pore space in MX-80 has been the subject of considerable debate. 3D reconstructions of the pore space based on tomographic methods could provide new insights into the nature of the pore space of compacted bentonites. To date, few such reconstructions have been done because of problems with the preparation of bentonite samples for electron microscopy. The nanoscale intergranular pore space was investigated here by cryo-Focused Ion Beam nanotomography (FIB-nt) applied to previously high-pressure frozen MX-80 bentonite samples. This approach allowed a tomographic investigation of the in situ microstru…

Materials scienceClay GelMineralogyMX-80 BentoniteSoil ScienceIntergranular corrosionMicrostructureClay GelsNanotomographyHoneycomb structureColloidCryo-sample PreparationGeochemistry and PetrologyBentoniteHoneycombMapEarth and Planetary Sciences (miscellaneous)Composite material620.11: WerkstoffePorosityClay mineralsWater Science and Technology
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Using the single-ring infiltrometer method to detect temporal changes in surface soil field-saturated hydraulic conductivity

2004

Abstract Determining temporal changes in field-saturated hydraulic conductivity ( K fs ) is important for understanding and modelling hydrological phenomena at the field scale. Little is known about the sensitivity of temporal change estimates to the method used for measuring K fs . The objective of this study was to compare temporal changes in K fs obtained in the surface layer of a clayey soil using two application procedures of the single-ring infiltrometer method. Rings installed permanently at the beginning of a 1.5-year study period (permanent sites, PSs, sample size N =16) and rings installed immediately before conducting the infiltrometer measurement (non-permanent sites, NPSs, N =1…

Materials scienceCompactionSoil ScienceMineralogySoil scienceSaturated hydraulic conductivitySingle-ring infiltrometerTemporal variabilityInfiltration (hydrology)Soil structureHydraulic conductivityLong periodSettore AGR/08 - Idraulica Agraria E Sistemazioni Idraulico-ForestaliInfiltrometerTemporal changeSurface layerAgronomy and Crop ScienceEarth-Surface ProcessesSoil and Tillage Research
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Recrystallization in subsurface zone seen by positron annihilation

2010

Abstract The paper presents studies of the defect distribution, detected by the positron annihilation method in the subsurface zone (SZ) of copper samples after dry sliding wear. It takes advantage of a new experimental technique based on scanning of the positron implantation profile. It allowed us to detect the defect profile in copper to the depth of 200 μm in a nondestructive way and study isochronal annealing behavior of this profile. We determined that annealing induces a recrystallization process which runs faster close to the surface than in deeper regions. After sliding, the complete recrystallization of the substructure takes place at temperature c.a. 600 °C. Some changes in the de…

Materials scienceCondensed matter physicsAnnealing (metallurgy)Mechanical EngineeringMineralogyRecrystallization (metallurgy)chemistry.chemical_elementSurfaces and InterfacesCopperSurfaces Coatings and FilmsPositronchemistryMechanics of MaterialsSubstructurePositron annihilationSliding wearTribology International
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Antiferroelectric PbZrO3 thin films: structure, properties and irradiation effects

2004

Abstract Irradiation effects on highly oriented antiferroelectric PbZrO 3 and ferroelectric Pb 0.92 La 0.08 (Zr 0.65 Ti 0.35 )O 3 thin films are investigated being exposed to neutron irradiation up to fluence 2*10 22 m −2 . The higher resistance of antiferroelectric PbZrO 3 thin films as compared to ferroelectric heterostructures to large fluences of neutron irradiation is recognized and discussed. Influence of two factors (structural and charge) was taken into account analysing irradiation effects on materials of different polarization states: ferroelectric PLZT (ceramics and thin films) and antiferroelectric PbZrO 3 films.

Materials scienceCondensed matter physicsMaterials ChemistryCeramics and CompositesMineralogyAntiferroelectricityIrradiationDielectricThin filmFluenceFerroelectricityTitanateZirconateJournal of the European Ceramic Society
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Impedance spectroscopy studies of SrMnO3, BaMnO3and Ba0.5Sr0.5MnO3ceramics

2014

The impedance spectrum of hexagonal SrMnO3, rhombohedral BaMnO3 and orthorhombic Ba0.5Sr0.5MnO3 ceramics, synthesized by conventional high-temperature method, was studied in a wide temperature and frequency range. The complex impedance plots of Z″ versus Z′ pointed to two contributions originating from grains and grain boundaries. The parameters of electric equivalent circuit were calculated. The semicircles related to the grain boundary are located at the lower frequency side due to higher resistivity and capacity of the grain boundaries. The Ba0.5Sr0.5MnO3 ceramics is characterized by the lowest activation energy related to the grains. The conductivities σac of all the investigated sample…

Materials scienceCondensed matter physicsMineralogyActivation energyConductivityDielectric spectroscopyElectrical resistivity and conductivityvisual_artvisual_art.visual_art_mediumGeneral Materials ScienceOrthorhombic crystal systemGrain boundaryCeramicInstrumentationElectrical impedancePhase Transitions
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Nonresonant hole burning spectroscopy of the relaxor ferroelectric PLZT

2002

Abstract The polydispersive dielectric response of a lanthanum-modified lead zirconate titanate relaxor ferroelectric was studied using nonresonant hole burning (NHB) spectroscopy. The dynamic heterogeneity of this material was evidenced by the fact that it was possible to burn frequency-dependent spectral holes. The maximum position of the spectral holes depended on the square root of the pump frequency Ω . The refilling of the spectral holes was monitored subsequent to excitation using various pump frequencies. The refilling data could be collapsed onto a master curve by re-scaling them, again, using Ω −0.5 as scaling factor. The refilling time was found to be much longer than the time sc…

Materials scienceCondensed matter physicsMineralogyGeneral ChemistryDielectricCondensed Matter PhysicsLead zirconate titanateFerroelectricityTitanateCondensed Matter::Materials Sciencechemistry.chemical_compoundDomain wall (magnetism)chemistryMaster equationMaterials ChemistrySpectroscopyExcitationSolid State Communications
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Growth zoning and strain patterns inside diamond crystals as revealed by Raman maps

2005

The Raman mapping technique provides a non-destructive means of studying internal growth textures and other micro-structural heterogeneity inside diamond single-crystals. Raman maps showing distribution patterns of the bandwidth (FWHM) of the main first-order lattice vibration of diamond ( LO=TO phonon at ~1332 cm −1 ) along two-dimensional planes inside diamond crystals may reveal the internal growth zoning of these crystals. The observed zoning is affected, and in some cases even obscured in micro-areas adjacent to inclusions, by patterns of heterogeneous strain in the diamond. We present Raman maps obtained from diamond crystals containing large, single-crystal graphite inclusions, from …

Materials scienceCondensed matter physicsPhononMaterial properties of diamondDiamondMineralogyengineering.materialDiamond flawssymbols.namesakeDiamond typeGeophysicsGeochemistry and PetrologysymbolsengineeringGraphiteRaman spectroscopyKimberliteAmerican Mineralogist
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Far-infrared and THz spectroscopy of 0.4PMN–0.3PSN–0.3PZN relaxor ferroelectric ceramics

2007

Abstract Temperature dependence of the optic phonons in 0.4PbMg 1/3 Nb 2/3 O 3 –0.3PbSc 1/2 Nb 1/2 O 3 –0.3PbZn 1/3 Nb 2/3 O 3 (0.4PMN–0.3PSN–0.3PZN) ceramics were studied by means of FTIR reflection and THz transmission spectroscopy in the temperature range of −253.15 to 226.85 °C. On heating from low temperatures, the A 1 component of the strongly split TO 1 mode softens towards the Burns temperature, but the softening ceases near 126.85 °C which could be a signature of polar cluster percolation temperature. Surprisingly, the TO 2 mode also softens on heating and follows the Cochran law with extrapolated critical temperature close to the melting point.

Materials scienceCondensed matter physicsPhononMineralogyAtmospheric temperature rangeFar infraredvisual_artPercolationMaterials ChemistryCeramics and CompositesMelting pointvisual_art.visual_art_mediumCeramicSpectroscopyBurns temperatureJournal of the European Ceramic Society
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