Hydrogen Embrittlement Of Steel
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Fundamentals of Hydrogen Embrittlement
Author | : Michihiko Nagumo |
Publsiher | : Springer Nature |
Total Pages | : 316 |
Release | : 2023-05-22 |
Genre | : Technology & Engineering |
ISBN | : 9789819909926 |
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This book is the second edition of the one originally published in 2016, as the first comprehensive treatment on the fundamentals of hydrogen embrittlement of metallic materials, mainly steel. The book provides students and researchers engaging in hydrogen problems with a unified view of the subject. Establishing reliable principles for materials design against hydrogen embrittlement and assessing their performance are recent urgent industrial needs in developing high-strength steel for hydrogen energy equipment and weight-reducing vehicles. The interdisciplinary nature of the subject, covering metal physics, materials science, and mechanics of fracture, has disturbed a profound understanding of the problem. In this book, previous studies are critically reviewed, and supplemental descriptions of fundamental ideas are presented when necessary. Emphasis is placed on experimental facts, with particular attention to their implication rather than phenomenological appearance. The adopted experimental conditions are also noted since the operating mechanism of hydrogen might differ by material and environment. For theories, employed assumptions and premises are noted to examine their versatility. Progress in the past decade in experimental and theoretical tools is remarkable and has nearly unveiled characteristic features of hydrogen embrittlement. Proposed models have almost covered feasible aspects of the function of hydrogen. This second edition has enriched the contents with recent crucial findings. Chapters on the manifestation of embrittlement in the deterioration of mechanical properties and microscopic features are reorganized, and the description is revised for the convenience of readers’ systematic understanding. A new chapter is created for delayed fracture in atmospheric environments as a conclusive subject of critical ideas presented in this book.
Hydrogen Embrittlement and Stress Corrosion Cracking
Author | : Alexander Robert Troiano,Ronald Gibala,R. F. Hehemann |
Publsiher | : ASM International |
Total Pages | : 356 |
Release | : 1984-01-01 |
Genre | : Technology & Engineering |
ISBN | : 1615031782 |
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Hydrogen Embrittlement of Steel
Author | : Robert Walton Buzzard |
Publsiher | : Unknown |
Total Pages | : 34 |
Release | : 1951 |
Genre | : Dielectrics |
ISBN | : UOM:39015077302555 |
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Hydrogen Embrittlement
Author | : Louis Raymond |
Publsiher | : ASTM International |
Total Pages | : 429 |
Release | : 1988 |
Genre | : Metals |
ISBN | : 9780803109599 |
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Hydrogen in Steel
Author | : Michael Smialowski |
Publsiher | : Elsevier |
Total Pages | : 468 |
Release | : 2014-05-09 |
Genre | : Science |
ISBN | : 9781483213712 |
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Hydrogen in Steel: Effect of Hydrogen on Iron and Steel During Production, Fabrication, and Use focuses on the effect of hydrogen on iron and steel during production, fabrication, and use. Topics covered range from the solubility of hydrogen in iron and ferrous alloys to the diffusion and permeation of hydrogen through iron and steel. Electrochemical problems related to the ability of iron to absorb hydrogen from aqueous solutions are also considered. Comprised of 19 chapters, this book begins with a detailed treatment of the nature and properties of metal-hydrogen systems, paying particular attention to the behavior of hydrogen in the bulk of the metal phase and the mechanism of reactions between metals and hydrogen or hydrogen-producing compounds. The reader is then introduced to the solubility of hydrogen in iron and ferrous alloys as well as the nature of the final product of the hydrogen-iron interaction. Subsequent chapters deal with dimensional changes and stresses produced in steel by cathodically evolved hydrogen; the effects of hydrogen on the physical, mechanical, and chemical properties of iron and steel; influence of welding on hydrogen; and sulfide corrosion cracking of steel. The effects of pickling on steel are also examined, along with the blistering and embrittlement caused by hydrogen on the base metal during electroplating. This book will be of value to students and practitioners in the field of physical chemistry.
Advances in Hydrogen Embrittlement Study
Author | : Vladimir A. Polyanskiy,Alexander K. Belyaev |
Publsiher | : Springer Nature |
Total Pages | : 213 |
Release | : 2021-03-13 |
Genre | : Technology & Engineering |
ISBN | : 9783030669485 |
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The book presents a collection of chapters on the current problems associated with hydrogen damage. It discusses the effect of hydrogen on material properties and its interaction with the material microstructure, physical features of hydrogen transport in metals and alloys, as well as applicable methods of measuring concentration of hydrogen in solid media.
Solutions to Hydrogen Attack in Steels
Author | : P. F. Timmins |
Publsiher | : ASM International(OH) |
Total Pages | : 216 |
Release | : 1997 |
Genre | : Technology & Engineering |
ISBN | : UOM:39015040613617 |
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This book is designed to help metallurgical, chemical, mechanical and reliability engineers responsible for the safe operation and maintenance of equipment made of steel.
The Problem of Hydrogen in Steel
Author | : A. R. Elsea,E. E. Fletcher |
Publsiher | : Unknown |
Total Pages | : 42 |
Release | : 1963 |
Genre | : Steel |
ISBN | : UOM:39015095155274 |
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This memorandum introduces the problem of delayed, brittle failures associated with hydrogen in steel, particularly high-strength steel. It is intended to help the steel user determine if he has such a problem. The effects of hydrogen on the mechanical properties of steel are dealt with, and the behavior of material susceptible to delayed, brittle failure is described. Also, the effects of such factors as strength level, magnitude of applied stress, hydrogen content, steel composition, test temperature, and strain rate on hydrogen embrittlement and the susceptibility to hydrogen-induced, delayed, brittle failure are discussed. Possible sources of hydrogen in steel and the types of tests useful in determining the susceptibility to delayed failure are outlined. (Author).