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"Mechanics-Microstructure-Corrosion" Coupling : Concepts, Experiments, Modeling and Cases / Christine BLANC
Titre : "Mechanics-Microstructure-Corrosion" Coupling : Concepts, Experiments, Modeling and Cases Type de document : texte imprimé Auteurs : Christine BLANC, Auteur ; Isabelle AUBERT, Auteur Editeur : ISTE Press, Ltd Année de publication : 2019 Importance : 551 p. Note générale : Contents
Acknowledgements
Introduction
List of Authors
IndexCatégories : Matériaux:Détérioration
Matériaux:Fissuration
Matériaux:Propriétés mécaniques
Microstructure (physique)
Science des matériauxIndex. décimale : 620.1 Mécanique de l'ingénieur (mécanique appliquée) et matériaux Résumé : Environmentally Assisted Cracking: Some Critical Aspects
THE BASICS FOR UNDERSTANDING MECHANICS-ENVIRINMENT-MICROSTRUCTURE COUPLINGS
The basics to better Understand Couplings in Physical Metallurgy
Continuum Mechanics
Fatigue Crack Initiation and Porpagation
Surface Chemistry and Passivation of Metals and Alloys
Electrochemistry for Mechanically-Assited Corrosion
Modeling Tools: From the Atom to the Macroscopic Scale
HYDROGEN AND THE EMBRITTLMENT OF METALIC MATERIALS
State of Hydrogen in Matter: Fundamental Ad/Absorption, Trapping and transport Mechanism
Hydrogen and Crystal Defects Interactions: Effects on Plasticity and Fracture
Industrial Consequences of Hydrogen Embrittlement
Experimental Techniques for Dosage and Detection of Hydrogen
STRESS CORROSION CRACKING
Effect of Stress/Strain Fields on Electrochemical Activity: Metallurgy/Stress Interaction and Surface Reactivity
Stress Corrosion Cracking. Between the Corrosion Defect and the Long Crack: the Phase of the Initiation of the Cracks
Stress Corrosion Crack Propagation
Oxidation-Assisted Cracking
Stress Corrosion Cracking: From In-Service Cracking to Laboratory Studies
CORROSION FATIGUE
Corrosion and Hydrogen Fatigue at Different Scales
Local-Scale Modeling of Plasticity-Environement Interactions
Specific Cases of Corrosion Fatigue
ADDITIONAL INFORMATION AND THE PATHS TO SOLVING
Local Electrochemical Methods Adapted to Studying Environment-Microstructure-Mechanics Couplings
Mechanical tests in Corrosive Environments and Under Gaseous Hydrogen
Liqui Metal Embrittlement
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