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¬The¬ Effect of Hydrogen and Hydrides on the Integrity of Zirconium Alloy Components: Delayed Hydride Cracking

¬The¬ Effect of Hydrogen and Hydrides on the Integrity of Zirconium Alloy Components: Delayed Hydride Cracking
Kataloginformation
Feldname Details
Vorliegende Sprache eng
Hinweise auf parallele Ausgaben 371760585 Buchausg. u.d.T.: ‡Puls, Manfred P.: ¬The¬ effect of hydrogen and hydrides on the integrity of zirconium alloy components
ISBN 978-1-4471-4194-5
Name Puls, Manfred P.
T I T E L ¬The¬ Effect of Hydrogen and Hydrides on the Integrity of Zirconium Alloy Components
Zusatz zum Titel Delayed Hydride Cracking
Verlagsort London
Verlag Springer
Erscheinungsjahr 2012
2012
Umfang Online-Ressource (XXXII, 451 p. 191 illus., 8 illus. in color, digital)
Reihe Engineering Materials
Notiz / Fußnoten Description based upon print version of record
Weiterer Inhalt The Effect of Hydrogen and Hydrides on the Integrity of Zirconium Alloy Components; Preface; Acknowledgments; Contents; List of Abbreviations and Acronyms1; Nomenclature1; 1 Introduction; 1.1…Overview; 1.2…Delayed Hydride Cracking; 1.3…Objectives and Outline; 2 Properties of Bulk Zirconium Hydrides; 2.1…Hydride Phase Compositions, Lattice Structure and Parameter Determinations; 2.1.1 Crystallographic Properties of the gamma -Hydride Phase. 2.1.2 Phase Relationships, Phase Stability, and Hydrogen Compositions in the delta - and gamma -Hydride Phases at the ( alpha + delta )/ delta Phase Boundary2.1.3 Crystallography of the delta -Hydride Phase; 2.2…Mechanical Properties of Bulk Zirconium Hydrides; 2.2.1 Yield Strength; 2.2.2 Fracture Toughness; 2.2.3 Microhardness, Elastic Moduli, Internal Friction; 2.2.4 Summary of Mechanical Strength Results; References; 3 Hydride Phases, Orientation Relationships, Habit Planes, and Morphologies; 3.1…Introduction. 3.2…Hydride Precipitation in alpha -Zr Alloys: Early Analyses Derived from Observations of gamma -Hydride Precipitates3.3…Hydride Precipitation in alpha -- Zr Alloys: Determinations of Lattice Transformation Relationships of gamma -Hydride Precipitates; 3.3.1 Introduction; 3.3.2 \varvec\rm\{ 1\; 0\; \overline{ 1} \; \boldell\} Habit Planes; 3.3.3 \varvec\rm\{ 1\; 0\; \overline{ 1} \; 0\} Habit Planes; 3.4…Hydride Precipitation in alpha / beta -Zr Alloys; 3.5…Hydride Nucleation Studies in alpha / beta Zr-2.5Nb Pressure Tube Material; 3.5.1 Microstructure of Zr-2.5Nb Alloys. 3.5.2 Hydride Precipitation in alpha / beta Zr Microstructures3.5.3 Hydride Precipitation in alpha / beta / omega Microstructures; 3.5.4 Influence of Prior Deformation on Hydride Precipitation; References; 4 Solubility of Hydrogen; 4.1…Solubility in the Dilute Phase of Single Phase Metal--Hydrogen Systems; 4.2…Solubility of Hydrogen in the Dilute Phase of alpha / beta Zirconium Alloys; 4.3…Effect of Stress on Hydrogen Chemical Potential in the Dilute Phase; 4.4…Interaction Energy Expressions; 4.4.1 Partial Molar Volume; 4.4.2 Size--Effect Interaction; 4.4.3 Diaelastic Polarizability. 4.4.4 Paraelastic Polarizability4.4.5 Interactions Between Hydrogen Atoms in Solution; 4.5…Interaction of Hydrogen Atoms in Solution with Internal Defects; 4.5.1 Density of Site Energies (DOSE) and Fermi--Dirac Statistics; 4.5.2 Interaction of Hydrogen with Dislocations: DOSE Method; 4.5.3 Formation of Hydrides at Dislocations: Thermodynamic Method; 5 Diffusion of Hydrogen; 5.1…Phenomenological Flux Equations; 5.2…Diffusivity---Theory; 5.3…Diffusivity in Dilute Phase---Results; 5.4…Thermal Diffusion---Results; References; 6 Characteristics of the Solvus; 6.1…Introduction. 6.2…General Considerations Concerning Hysteresis in Phase Transformations
Titelhinweis Buchausg. u.d.T.: ‡Puls, Manfred P.: ¬The¬ effect of hydrogen and hydrides on the integrity of zirconium alloy components
ISBN ISBN 978-1-4471-4195-2
Klassifikation TG
TEC009070
TEC021000
620.16
669.9
620.1
TA405-409.3
QA808.2
ZM 4300
UQ 7600
VE 9650
VH 8065
VN 6020
Kurzbeschreibung By drawing together the current theoretical and experimental understanding of the phenomena of delayed hydride cracking (DHC) in zirconium alloys, The Effect of Hydrogen and Hydrides on the Integrity of Zirconium Alloy Components: Delayed Hydride Cracking provides a detailed explanation focusing on the properties of hydrogen and hydrides in these alloys. Whilst the emphasis lies on zirconium alloys, the combination of both the empirical and mechanistic approaches creates a solid understanding that can also be applied to other hydride forming metals. This up-to-date reference focuses on documented research surrounding DHC, including current methodologies for design and assessment of the results of periodic in-service inspections of pressure tubes in nuclear reactors. Emphasis is placed on showing how our understanding of DHC is supported by progress in general understanding of such broad fields as the study of hysteresis associated with first order phase transformations, phase relationships in coherent crystalline metallic solids, the physics of point and line defects, diffusion of substitutional and interstitial atoms in crystalline solids, and continuum fracture and solid mechanics. Furthermore, an account of current methodologies is given illustrating how such understanding of hydrogen, hydrides and DHC in zirconium alloys underpins these methodologies for assessments of real life cases in the Canadian nuclear industry. The all-encompassing approach makes The Effect of Hydrogen and Hydrides on the Integrity of Zirconium Alloy Component: Delayed Hydride Cracking an ideal reference source for students, researchers and industry professionals alike.
1. Schlagwortkette Zirkonium
Legierung
Hydride
Bruchmechanik
ANZEIGE DER KETTE Zirkonium -- Legierung -- Hydride -- Bruchmechanik
2. Schlagwortkette Zirkoniumlegierung
Wasserstoff
ANZEIGE DER KETTE Zirkoniumlegierung -- Wasserstoff
3. Schlagwortkette Zirkoniumlegierung
Hydride
ANZEIGE DER KETTE Zirkoniumlegierung -- Hydride
SWB-Titel-Idn 37065188X
Signatur Springer E-Book
Bemerkungen Elektronischer Volltext - Campuslizenz
Elektronische Adresse $uhttp://dx.doi.org/10.1007/978-1-4471-4195-2
Internetseite / Link Volltext
Siehe auch Volltext
Siehe auch Cover
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