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Metallic glasses --- Analysis. --- Glasses, Metallic --- Glassy alloys --- Glassy metals --- Alloys --- Amorphous substances --- Liquid metals
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Metallic glasses. --- Glasses, Metallic --- Glassy alloys --- Glassy metals --- Alloys --- Amorphous substances --- Liquid metals
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Due to their amorphous character and the concomitant lack of dislocations, metallic glasses exhibit physical and chemical properties that are quite different from those of other solid materials. For example, they can be twice as strong as steels, exhibit superior soft magnetic behavior and outstanding corrosion resistance and, sometimes, interesting catalytic properties, thus having potential for a widespread range of technological applications. The aim of this book is to address, from both experimental and theoretical points of view, some of the challenges to improve the glass forming ability of these materials, to optimize their overall mechanical performance, and to enhance their functional properties. Through the contributions from different renowned authors in the field, new prospects towards the development of innovative compositions and novel applications, particularly in devices with micrometer and submicrometer sizes, are provided, where the full potential of these glassy materials is being achieved.
Metallic glasses. --- Glasses, Metallic --- Glassy alloys --- Glassy metals --- Alloys --- Amorphous substances --- Liquid metals
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Metallic Glasses and Their Oxidation provides a comprehensive review of the structures, properties, preparations, processing and applications of metallic glasses. Special attention is paid to the oxidation behaviors and related mechanisms of metallic glasses that occur during their preparation, processing and application. The book's authors introduce basic knowledge of metallic glasses, including their structures, properties, processing techniques and applications. Then, the theories and techniques commonly used in oxidation investigation are highlighted, including thermal oxidation, native oxidation, stressed oxidation, powder oxidation and oxidation simulation. The book closes with the influence of oxidation on the structures and performances of metallic glasses, proposes measures to control oxidation, and discusses how to take advantage of oxidation to reinforce materials or create new materials.
Metallic glasses. --- Oxidation. --- Autoxidation --- Glasses, Metallic --- Glassy alloys --- Glassy metals --- Alloys --- Amorphous substances --- Liquid metals
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Metals and their compounds --- Metallic glasses --- 669 --- Glasses, Metallic --- Glassy alloys --- Glassy metals --- Alloys --- Amorphous substances --- Liquid metals --- Metallurgy --- Metallic glasses. --- 669 Metallurgy
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Metallic glasses are very promising engineering and functional materials due to their unique mechanical, chemical, and physical properties, attracting increasing attention from both scientific and industrial communities. However, their practical applications are greatly hindered due to three main problems: dimensional limit, poor tension plasticity, and difficulty in machining and shaping. Therefore, further investigation of these issues is urgently required. This book provides readers with recent achievements and developments in the properties and processing of metallic glasses, including mainly thermoplastic forming of metallic glasses (Chapter 2), atomic-level simulation of mechanical deformation of metallic glasses (Chapter 3), metallic glass matrix composites (Chapter 4), and tribo-electrochemical applications of metallic glasses (Chapters 5 and 6).
Metallic glasses --- Analysis. --- Glasses, Metallic --- Glassy alloys --- Glassy metals --- Alloys --- Amorphous substances --- Liquid metals --- Physical Sciences --- Engineering and Technology --- Materials Science --- Metals and Nonmetals --- Metallurgy
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"Intermetallics is concerned with all aspects of ordered chemical compounds between two or more metals and notably with their applications."
Intermetallic compounds --- Composés intermétalliques --- Metallography --- Métallographie --- Périodiques. --- Metallic glasses --- Composés intermétalliques --- Métallographie --- Périodiques. --- Glasses, Metallic --- Glassy alloys --- Glassy metals --- Alloys --- Amorphous substances --- Liquid metals --- Metals --- Verres métalliques --- Metallic glasses.
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Metallic glasses --- Spin glasses --- Transition metal alloys --- Glasses, Magnetic --- Glasses, Spin --- Magnetic glasses --- Magnetic alloys --- Nuclear spin --- Solid state physics --- Glasses, Metallic --- Glassy alloys --- Glassy metals --- Alloys --- Amorphous substances --- Liquid metals --- Magnetic properties
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Metallic glasses. --- Composite materials. --- Bulk solids. --- Bulk materials --- Particulate solids --- Materials --- Particles --- Solids --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Glasses, Metallic --- Glassy alloys --- Glassy metals --- Alloys --- Amorphous substances --- Liquid metals
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The topics discussed in this book focus on fundamental problems concerning the structural relaxation of amorphous metallic alloys, above all the possibility of studying it on the basis of viscous flow behavior and its relation to rheological anomalies, such as bend stress relaxation, thermal expansion, specific heat, density changes, and crystallization. Most relaxation studies deal with the relaxation changes of a single definite material property, and not with a wider spectrum of physical properties integrated into a common framework. This book shows that it is possible to describe these property changes on the basis of a more comprehensive theoretical understanding of their mechanism.
Materials Science --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Metallic glasses. --- Glasses, Metallic --- Glassy alloys --- Glassy metals --- Alloys --- Amorphous substances --- Liquid metals --- Materials. --- Materials Science, general. --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Materials --- Materials science. --- Material science --- Physical sciences
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