Updated to include recent results from intensive worldwide research efforts in materials science, surface science, and corrosion science, the third edition of this bestselling book explores the latest advances in corrosion and protection mechanisms. It presents a detailed account of the chemical and electrochemical surface reactions that govern corrosion as well as the link between microscopic forces and macroscopic behavior. Revised and expanded, this edition includes four new chapters on corrosion fundamentals, the passivity of metals, high temperature corrosion, and the corrosion of aluminum alloys.…mehr
Updated to include recent results from intensive worldwide research efforts in materials science, surface science, and corrosion science, the third edition of this bestselling book explores the latest advances in corrosion and protection mechanisms. It presents a detailed account of the chemical and electrochemical surface reactions that govern corrosion as well as the link between microscopic forces and macroscopic behavior. Revised and expanded, this edition includes four new chapters on corrosion fundamentals, the passivity of metals, high temperature corrosion, and the corrosion of aluminum alloys.
Philippe Marcus is director of research at CNRS and director of the Laboratory of Physical Chemistry of Surfaces at Chimie ParisTech. Dr. Marcus has authored or coauthored over 300 papers and has received numerous awards, including the Uhlig Award from the Electrochemical Society, the Whitney Award from NACE International, the Cavallaro Medal from the European Federation of Corrosion, and the U.R. Evans Award from the Institute of Corrosion. His research interests encompass surface chemistry, surface electrochemistry, and corrosion science, with an emphasis on understanding the structure and properties of metal and alloy surfaces.
Inhaltsangabe
Fundamentals of Corrosion (Surface Science and Electrochemical Basis. Surface Effects on Hydrogen Entry into Metals. Anodic Dissolution. Thin Oxide Film Formation on Metals. Passivity of Metals. Passivity of Austenitic Stainless Steels. Mechanisms of Pitting Corrosion. Sulfur-Assisted Corrosion Mechanisms and the Role of Alloyed Elements. Further Insights on the Pitting Corrosion of Stainless Steels. Crevice Corrosion of Metallic Materials. Stress-Corrosion Cracking Mechanisms. Corrosion Fatigue Mechanisms in Metallic Materials. High Temperature Corrosion. Corrosion Prevention by Adsorbed Organic Monolayers and Ultrathin Plasma Polymer Films. Atmospheric Corrosion. Corrosion of Aluminum Alloys. Microbially Influenced Corrosion. Corrosion in Nuclear Systems: Environmentally Assisted Cracking in Light Water Reactors. Corrosion of Microelectronic and Magnetic Data-Storage Devices. Organic Coatings. Index.
Fundamentals of Corrosion (Surface Science and Electrochemical Basis. Surface Effects on Hydrogen Entry into Metals. Anodic Dissolution. Thin Oxide Film Formation on Metals. Passivity of Metals. Passivity of Austenitic Stainless Steels. Mechanisms of Pitting Corrosion. Sulfur-Assisted Corrosion Mechanisms and the Role of Alloyed Elements. Further Insights on the Pitting Corrosion of Stainless Steels. Crevice Corrosion of Metallic Materials. Stress-Corrosion Cracking Mechanisms. Corrosion Fatigue Mechanisms in Metallic Materials. High Temperature Corrosion. Corrosion Prevention by Adsorbed Organic Monolayers and Ultrathin Plasma Polymer Films. Atmospheric Corrosion. Corrosion of Aluminum Alloys. Microbially Influenced Corrosion. Corrosion in Nuclear Systems: Environmentally Assisted Cracking in Light Water Reactors. Corrosion of Microelectronic and Magnetic Data-Storage Devices. Organic Coatings. Index.
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