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Amorphous Metallic Alloys

Author : BURTON
Publisher : Elsevier
Page : 549 pages
File Size : 20,11 MB
Release : 2013-10-22
Category : Technology & Engineering
ISBN : 1483192431

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Amorphous Metallic Alloys covers the preparation and properties of alloys produced by rapid quenching from the molten state. This book focuses on three technologically important classes of magnetic amorphous alloy—transition metal-metalloid (TM-M) alloys, rare earth-transition metal (RE-TM) alloys, and transition metal-zirconium or hafnium alloys (TM-Zr-Hf). The melt-quenched transition metal-metalloid and transition metal-zirconium type alloys are also emphasized. This text likewise explains in detail how amorphous atomic structure affects magnetic, mechanical, chemical, corrosion, and electrical characteristics. Other topics include glass forming ability in metallic materials, scattering theory of amorphous metals, dynamics of inhomogeneous plastic flow, and powder production processes. This publication is intended for students and researchers conducting work on amorphous metallic alloys.

Bulk Metallic Glasses

Author : C. Suryanarayana
Publisher : CRC Press
Page : 543 pages
File Size : 11,22 MB
Release : 2017-11-22
Category : Technology & Engineering
ISBN : 1498763685

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Reflecting the fast pace of research in the field, the Second Edition of Bulk Metallic Glasses has been thoroughly updated and remains essential reading on the subject. It incorporates major advances in glass forming ability, corrosion behavior, and mechanical properties. Several of the newly proposed criteria to predict the glass-forming ability of alloys have been discussed. All other areas covered in this book have been updated, with special emphasis on topics where significant advances have occurred. These include processing of hierarchical surface structures and synthesis of nanophase composites using the chemical behavior of bulk metallic glasses and the development of novel bulk metallic glasses with high-strength and high-ductility and superelastic behavior. New topics such as high-entropy bulk metallic glasses, nanoporous alloys, novel nanocrystalline alloys, and soft magnetic glassy alloys with high saturation magnetization have also been discussed. Novel applications, such as metallic glassy screw bolts, surface coatings, hyperthermia glasses, ultra-thin mirrors and pressure sensors, mobile phone casing, and degradable biomedical materials, are described. Authored by the world’s foremost experts on bulk metallic glasses, this new edition endures as an indispensable reference and continues to be a one-stop resource on all aspects of bulk metallic glasses.

The Magnetism of Amorphous Metals and Alloys

Author : J.A. Fernandez-Baca
Publisher : World Scientific
Page : 350 pages
File Size : 15,94 MB
Release : 1995
Category : Science
ISBN : 9789810210335

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http://www.worldscientific.com/worldscibooks/10.1142/1712

Alloy Materials and Their Allied Applications

Author : Inamuddin
Publisher : John Wiley & Sons
Page : 240 pages
File Size : 41,31 MB
Release : 2020-06-16
Category : Technology & Engineering
ISBN : 1119654882

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Alloy Materials and Their Allied Applications provides an in-depth overview of alloy materials and applications. The 11 chapters focus on the fabrication methods and design of corrosion-resistant, magnetic, biodegradable, and shape memory alloys. The industrial applications in the allied areas, such as biomedical, dental implants, abrasive finishing, surface treatments, photocatalysis, water treatment, and batteries, are discussed in detail. This book will help readers solve fundamental and applied problems faced in the field of allied alloys applications.

The Magnetism Of Amorphous Metals And Alloys

Author : Wai-yim Ching
Publisher : World Scientific
Page : 350 pages
File Size : 24,79 MB
Release : 1995-08-31
Category : Technology & Engineering
ISBN : 9814522899

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Contents:Theory of Magnetism in Amorphous Transition Metals and Alloys (Y Kakehashi & H Tanaka)Electronic Structure Calculations in Magnetic Metallic Glasses (W Y Ching)Random Anisotropy in Amorphous Alloys (E M Chudnovsky)Magnetic Properties of Vapor-Quenched Amorphous and Metastable Crystalline Alloys (C L Chien)Neutron Scattering Studies of the Spin Dynamics of Amorphous Alloys (J W Lynn & J A Fernandez-Baca)Numerical Studies of Magnons in Amorphous Magnets (D L Huber)Magnetism and Magneto-Optics of Rare Earth-Transition Metal Glasses and Multilayers (D J Sellmyer et al.) Readership: Materials scientists and condensed matter physicists. keywords:Amorphous Magnetism;Metals, Alloys and Multi-Layers;Electronic Structure;Random Anisotropy;Spin Dynamics

Progress in Metallic Alloys

Author : Vadim Glebovsky
Publisher : BoD – Books on Demand
Page : 300 pages
File Size : 44,81 MB
Release : 2016-10-19
Category : Technology & Engineering
ISBN : 9535126962

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In general, metallic alloys are the interdisciplinary subject or even an area that cover physics, chemistry, material science, metallurgy, crystallography, etc. This book is devoted to the metallic alloys. The primary goal is to provide coverage of advanced topics and trends of R

Fundamentals of Creep in Metals and Alloys

Author : Michael E. Kassner
Publisher : Elsevier
Page : 289 pages
File Size : 29,29 MB
Release : 2004-04-06
Category : Technology & Engineering
ISBN : 0080532144

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* Numerous line drawings with consistent format and units allow easy comparison of the behavior of a very wide range of materials * Transmission electron micrographs provide a direct insight in the basic microstructure of metals deforming at high temperatures * Extensive literature review of over 1000 references provide an excellent reference document, and a very balanced discussion Understanding the strength of materials at a range of temperatures is critically important to a huge number of researchers and practitioners from a wide range of fields and industry sectors including metallurgists, industrial designers, aerospace R&D personnel, and structural engineers. The most up-to date and comprehensive book in the field, Fundamentals of Creep in Metals and Alloys discusses the fundamentals of time-dependent plasticity or creep plasticity in metals, alloys and metallic compounds. This is the first book of its kind that provides broad coverage of a range of materials not just a sub-group such as metallic compounds, superalloys or crystals. As such it presents the most balanced view of creep for all materials scientists. The theory of all of these phenomena are extensively reviewed and analysed in view of an extensive bibliography that includes the most recent publications in the field. All sections of the book have undergone extensive peer review and therefore the reader can be sure they have access to the most up-to-date research, fully interrogated, from the world’s leading investigators. · Numerous line drawings with consistent format and units allow easy comparison of the behavior of a very wide range of materials· Transmission electron micrographs provide a direct insight in the basic microstructure of metals deforming at high temperatures· Extensive literature review of over 1000 references provide an excellent reference document, and a very balanced discussion

Thermal and Time Stability of Amorphous Alloys

Author : A. M. Glezer
Publisher : CRC Press
Page : 181 pages
File Size : 36,72 MB
Release : 2017-09-07
Category : Science
ISBN : 1351655612

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This reference is dedicated to the problem of time-temperature stability of amorphous (non-crystalline) metal alloys with strongly nonequilibrium structure and unique physical and mechanical properties that are obtained by quenching from the melt at a rate that exceeds one millions of degrees c.o.s. second. As a stability test, the behavior of the plasticity of amorphous alloys is studied. The book examines the fundamental characteristics of amorphous alloys, the basic laws of structural relaxation, generalized information about the phenomenon of the ductile-brittle transition (temper embrittlement), the development of physically justified methods of predicting the stability of the properties, and provides information about the attempts of controlling the structure for the purpose of suppressing or deceleration of the ductile-brittle transition and, as a consequence, increasing the temperature and temporal stability of the amorphous state.