Hydrogen Effects On Material Behavior And Corrosion Deformation Interactions
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Hydrogen Effects on Material Behavior and Corrosion Deformation Interactions
Author | : Neville R. Moody |
Publsiher | : Minerals, Metals, & Materials Society |
Total Pages | : 1072 |
Release | : 2003 |
Genre | : Technology & Engineering |
ISBN | : UOM:39015058719496 |
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This two-volume set contains proceedings that act as a forum for discussion of the advances in hydrogen effects and corrosion deformation interactions.
Effects of Hydrogen on Materials
Author | : Brian Somerday,Petros Sofronis,Russell H. Jones |
Publsiher | : ASM International |
Total Pages | : 781 |
Release | : 2009-01-01 |
Genre | : Technology & Engineering |
ISBN | : 9781615031368 |
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Research and commercial activity in developing hydrogen as a fuel is driving increased attention on hydrogen-materials interactions. In particular, a renewed and intensifying interest in developing hydrogen fuel cells has prompted extensive research with the objective to enable the safe design of components for transporting and storing hydrogen fuel. This volume is the proceedings from the premier conference on hydrogen effects in materials, bridging scientific research and engineering applications. The proceedings volume highlights several themes: the technological importance of hydrogen effects on structural materials; the impact of bridging science and engineering; and the opportunity to apply new research tools, including simulation techniques as well as experimental methods.
Hydrogen Effects in Materials
Author | : Anthony W. Thompson,Neville R. Moody |
Publsiher | : John Wiley & Sons |
Total Pages | : 1303 |
Release | : 2013-09-27 |
Genre | : Technology & Engineering |
ISBN | : 9781118803257 |
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Proceedings of the Fifth International Conference on the Effect of Hydrogen on the Behavior of Materials sponsored by the Structural Materials Division (SMD) Mechanical Metallurgy and Corrosion & Environmental Effects Committees of The Minerals, Metals & Materials Society held at Jackson Lake Lodge, Moran, Wyoming, September 11-14, 1994.
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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Encyclopedia of Iron Steel and Their Alloys Online Version
Author | : Rafael Colás,George E. Totten |
Publsiher | : CRC Press |
Total Pages | : 3918 |
Release | : 2016-01-06 |
Genre | : Technology & Engineering |
ISBN | : 9781000031676 |
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The first of many important works featured in CRC Press’ Metals and Alloys Encyclopedia Collection, the Encyclopedia of Iron, Steel, and Their Alloys covers all the fundamental, theoretical, and application-related aspects of the metallurgical science, engineering, and technology of iron, steel, and their alloys. This Five-Volume Set addresses topics such as extractive metallurgy, powder metallurgy and processing, physical metallurgy, production engineering, corrosion engineering, thermal processing, metalworking, welding, iron- and steelmaking, heat treating, rolling, casting, hot and cold forming, surface finishing and coating, crystallography, metallography, computational metallurgy, metal-matrix composites, intermetallics, nano- and micro-structured metals and alloys, nano- and micro-alloying effects, special steels, and mining. A valuable reference for materials scientists and engineers, chemists, manufacturers, miners, researchers, and students, this must-have encyclopedia: Provides extensive coverage of properties and recommended practices Includes a wealth of helpful charts, nomograms, and figures Contains cross referencing for quick and easy search Each entry is written by a subject-matter expert and reviewed by an international panel of renowned researchers from academia, government, and industry. Also Available Online This Taylor & Francis encyclopedia is also available through online subscription, offering a variety of extra benefits for researchers, students, and librarians, including: Citation tracking and alerts Active reference linking Saved searches and marked lists HTML and PDF format options Contact Taylor and Francis for more information or to inquire about subscription options and print/online combination packages. US: (Tel) 1.888.318.2367; (E-mail) [email protected] International: (Tel) +44 (0) 20 7017 6062; (E-mail) [email protected]
Hydrogen Effects in Metals
Author | : Irving Melvin Bernstein,Anthony W. Thompson |
Publsiher | : Unknown |
Total Pages | : 1418 |
Release | : 1981 |
Genre | : Metals |
ISBN | : UCAL:B4120793 |
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Gaseous Hydrogen Embrittlement of Materials in Energy Technologies
Author | : Richard P Gangloff,Brian P Somerday |
Publsiher | : Elsevier |
Total Pages | : 521 |
Release | : 2012-01-19 |
Genre | : Technology & Engineering |
ISBN | : 9780857095374 |
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Many modern energy systems are reliant on the production, transportation, storage, and use of gaseous hydrogen. The safety, durability, performance and economic operation of these systems is challenged by operating-cycle dependent degradation by hydrogen of otherwise high performance materials. This important two-volume work provides a comprehensive and authoritative overview of the latest research into managing hydrogen embrittlement in energy technologies. Volume 2 is divided into three parts, part one looks at the mechanisms of hydrogen interactions with metals including chapters on the adsorption and trap-sensitive diffusion of hydrogen and its impact on deformation and fracture processes. Part two investigates modern methods of modelling hydrogen damage so as to predict material-cracking properties. The book ends with suggested future directions in science and engineering to manage the hydrogen embrittlement of high-performance metals in energy systems. With its distinguished editors and international team of expert contributors, Volume 2 of Gaseous hydrogen embrittlement of materials in energy technologies is an invaluable reference tool for engineers, designers, materials scientists, and solid mechanicians working with safety-critical components fabricated from high performance materials required to operate in severe environments based on hydrogen. Impacted technologies include aerospace, petrochemical refining, gas transmission, power generation and transportation. Summarises the wealth of recent research on understanding and dealing with the safety, durability, performance and economic operation of using gaseous hydrogen at high pressure Chapters review mechanisms of hydrogen embrittlement including absorption, diffusion and trapping of hydrogen in metals Analyses ways of modelling hydrogen-induced damage and assessing service life
Solid State Hydrogen Storage
Author | : Gavin Walker |
Publsiher | : Elsevier |
Total Pages | : 600 |
Release | : 2008-09-30 |
Genre | : Technology & Engineering |
ISBN | : 9781845694944 |
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Hydrogen fuel cells are emerging as a major alternative energy source in transportation and other applications. Central to the development of the hydrogen economy is safe, efficient and viable storage of hydrogen. Solid-state hydrogen storage: Materials and chemistry reviews the latest developments in solid-state hydrogen storage. Part one discusses hydrogen storage technologies, hydrogen futures, hydrogen containment materials and solid-state hydrogen storage system design. Part two reviews the analysis of hydrogen interactions including structural characterisation of hydride materials, neutron scattering techniques, reliably measuring hydrogen uptake in storage materials and modelling of carbon-based materials for hydrogen storage. Part three analyses physically-bound hydrogen storage with chapters on zeolites, carbon nanostructures and metal-organic framework materials. Part four examines chemically-bound hydrogen storage including intermetallics, magnesium hydride, alanates, borohydrides, imides and amides, multicomponent hydrogen storage systems, organic liquid carriers, indirect hydrogen storage in metal ammines and technological challenges in hydrogen storage. With its distinguished editor and international team of contributors, Solid-state hydrogen storage: Materials and chemistry is a standard reference for researchers and professionals in the field of renewable energy, hydrogen fuel cells and hydrogen storage. Assesses hydrogen fuel cells as a major alternative energy source Discusses hydrogen storage technologies and solid-state hydrogen storage system design Explores the analysis of hydrogen interactions including reliably measuring hydrogen uptake in storage materials