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Experimental techniques in materials and mechanics

Author: C Suryanarayana
Publisher: Boca Raton : CRC Press, ©2011.
Edition/Format:   Print book : EnglishView all editions and formats

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Document Type: Book
All Authors / Contributors: C Suryanarayana
ISBN: 9781439819043 1439819041
OCLC Number: 744974825
Description: xvii, 450 pages : illustrations ; 25 cm
Contents: IntroductionMaterials Science and EngineeringStructurePropertiesOutline of the BookX-Ray DiffractionIntroductionCrystal StructureProduction of X-RaysAbsorption of X-RaysThe Bragg EquationDiffraction AnglesIntensities of Diffracted BeamsXRD EquipmentExamination of a Typical XRD PatternCrystal Structure DeterminationIndexing the XRD PatternDifferentiation between SC and BCC LatticesComparison with Electron and Neutron DiffractionExperimental ProcedureOptical MicroscopyIntroductionPrinciple of the Optical MicroscopeComponents of the MicroscopeMicroscopic ObservationInformation Derivable from the MicrostructureSpecimen Preparation for Microscopic ExaminationSome Typical MicrostructuresPrecautionsExperimental ProcedureScanning Electron MicroscopyIntroductionBasic Design of the SEMElectron SourceElectron Beam-Specimen InteractionsSpecimen PreparationApplicationsExperimental ProcedureThe Iron-Carbon Phase Diagram and Microstructures of SteelsIntroductionPhase DiagramsRepresentation of Phase DiagramsThe Phase RuleApplication of the Phase RuleDerivation of Lever RuleThe Iron-Carbon Phase DiagramCooling Behavior and Microstructural DevelopmentDifferentiation between Proeutectoid Ferrite and Proeutectoid CementiteMicrostructural ObservationExperimental ProcedureHeat Treatment of SteelsIntroductionReaction RatesIsothermal Transformation DiagramsTransformation ProductsRetained AusteniteIsothermal TreatmentsEffect of Alloying Elements on the T-T-T DiagramContinuous Cooling Transformation DiagramsTypes of Heat TreatmentTemper EmbrittlementProperties of Heat-Treated SteelsExperimental ProcedureHardenability of SteelsIntroductionDefinition of HardenabilityDistribution of HardnessSeverity of QuenchThe Grossmann TestThe Jominy End-Quench TestParameters Affecting HardenabilityJominy Tests and Continuous Cooling Transformation DiagramsHardness Tester to be UsedJominy Test for Nonferrous AlloysSome CommentsExperimental ProcedureResultsAdditional ExperimentHardness TestingIntroductionTypes of Hardness MeasurementsScratch Hardness MeasurementRebound Hardness MeasurementThe Durometer TestIndentation Hardness MeasurementBrinell Hardness TestingRockwell Hardness TestingVickers Hardness TestingMicrohardness TestingNanoindentation TestingGeneral ObservationsCorrelations.Experimental ProcedureObservationsAdditional ExperimentsTensile TestingIntroductionMeasurement of StrengthBasic DefinitionsDeformation BehaviorThe Tensile TestProperties Obtained from the Tensile TestTrue Stress versus True Strain CurveGeneral ObservationsInfluence of Variables on Tensile PropertiesExperimental ProcedureObservationsResultsAdditional ExperimentImpact TestingIntroductionImpact-Testing TechniquesDuctile-Brittle TransitionDetermination of Ductile-Brittle Transition TemperatureEffect of Variables on Impact EnergyPrecautionsCorrelations with Other Mechanical PropertiesDBTT in Nonmetallic MaterialsExperimental ProcedureObservationsFatigue TestingIntroductionDefinitionsFatigue TestingSome Typical Examples of Fatigue FailureFatigue Failure MechanismFactors Affecting the Fatigue Strength of MaterialsFracture Mechanics ApproachCorrelations between Fatigue Strength and Other Mechanical PropertiesPrecautionsExperimental ProcedureAdditional ExperimentsCreep TestingIntroductionThe Creep TestThe Creep CurveEffect of Stress and TemperatureCreep-Rupture TestCreep Resistance CriteriaLarson-Miller ParameterCreep in Ceramic MaterialsCreep in Polymeric MaterialsExperimental ProcedureIndexExercises and Further Reading appear at the end of each chapter.
Responsibility: C. Suryanarayana.


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This book covers the main characterization tools for materials mechanics, phase analysis by x-ray diffraction and microstructure analysis in a comprehensive and exhaustive way. In addition, steel is Read more...

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