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Phase Diagrams and Physical Properties of Nonequilibrium Alloys: Subvolume C: Physical Properties of Multi-Component Amorphous Alloys, Part 3: Systems from Ca-Cu-Mg-Y to Ni-Ti-Y-Zr

Phase Diagrams and Physical Properties of Nonequilibrium Alloys: Subvolume C: Physical Properties of Multi-Component Amorphous Alloys, Part 3: Systems from Ca-Cu-Mg-Y to Ni-Ti-Y-Zr

Authors
Publisher Springer, Berlin
Year
Pages 369
Version hardback
Language English
ISBN 9783662579190
Categories Condensed matter physics (liquid state & solid state physics)
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Book description

The present reference work contains information about the structure of multicomponent bulk metallic glasses in terms of Interference Function, Radial Distribution Function, EXAFS Measurement, XANES Spectra, Small-Angle X-ray Scattering, X-ray Photoelectron Spectroscopy, and the following properties of multicomponent metallic glasses, systems from Ca-Cu-Mg-Y to Ni-Ti-Y-Zr: Physical properties (Density, Volume, Thermal Properties, Characteristic Temperatures, Heat Capacity and Heat Effects), Mechanical Properties (Elastic Moduli and Strain as well as plastic features including Tensile Strength, Compressive Strength, Hardness and Strain values, Fatigue Strength, etc.), Magnetic Properties (Curie Temperature, Coercive Force, Remanence, Permeability, Saturation Magnetization, Magnetostriction, Mössbauer Spectroscopy, etc.), Electrical Properties (Resistivity, Hall Effect, Thermoelectric Power, Superconductivity, etc.), and some Chemical Properties (Corrosion Behaviour).

Phase Diagrams and Physical Properties of Nonequilibrium Alloys: Subvolume C: Physical Properties of Multi-Component Amorphous Alloys, Part 3: Systems from Ca-Cu-Mg-Y to Ni-Ti-Y-Zr

Table of contents

Introduction.- Data chapters for multi-component amorphous alloys from Ca-Cu-Mg-Y to Ni-Ti-Y-Zr with the following properties: Physical properties (Density, Volume, Thermal Properties, Characteristic Temperatures, Heat Capacity and Heat Effects), Mechanical Properties (Elastic Moduli and Strain as well as plastic features including Tensile Strength, Compressive Strength, Hardness and Strain values, Fatigue Strength, etc.), Magnetic Properties (Curie Temperature, Coercive Force, Remanence, Permeability, Saturation Magnetization, Magnetostriction, Mössbauer Spectroscopy, etc.), Electrical Properties (Resistivity, Hall Effect, Thermoelectric Power, Superconductivity, etc.), and some Chemical Properties (Corrosion Behaviour).

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