Yoshiyuki Kawazoe, Ursula Carow-Watamura
Phase Diagrams and Physical Properties of Nonequilibrium Alloys: 5 Component Amorphous Alloys
A Supplement to Landolt-Börnstein III/37 Series
Yoshiyuki Kawazoe, Ursula Carow-Watamura
Phase Diagrams and Physical Properties of Nonequilibrium Alloys: 5 Component Amorphous Alloys
A Supplement to Landolt-Börnstein III/37 Series
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This handbook presents the data of 5-component metallic amorphous alloys, including a large number of specimen obtained by adding a 5-th component to a quaternary alloy, some were obtained by starting from lower component base alloys, and there are a few examples of so-called high-entropy alloys.It contributes both to fundamental researches and industrial applications.
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This handbook presents the data of 5-component metallic amorphous alloys, including a large number of specimen obtained by adding a 5-th component to a quaternary alloy, some were obtained by starting from lower component base alloys, and there are a few examples of so-called high-entropy alloys.It contributes both to fundamental researches and industrial applications.
Produktdetails
- Produktdetails
- Verlag: Springer / Springer Berlin Heidelberg / Springer, Berlin
- Artikelnr. des Verlages: 978-3-662-64977-0
- 1st ed. 2022
- Seitenzahl: 472
- Erscheinungstermin: 6. Januar 2023
- Englisch
- Abmessung: 241mm x 160mm x 30mm
- Gewicht: 955g
- ISBN-13: 9783662649770
- ISBN-10: 3662649772
- Artikelnr.: 63322938
- Verlag: Springer / Springer Berlin Heidelberg / Springer, Berlin
- Artikelnr. des Verlages: 978-3-662-64977-0
- 1st ed. 2022
- Seitenzahl: 472
- Erscheinungstermin: 6. Januar 2023
- Englisch
- Abmessung: 241mm x 160mm x 30mm
- Gewicht: 955g
- ISBN-13: 9783662649770
- ISBN-10: 3662649772
- Artikelnr.: 63322938
Prof. Dr. Yoshiyuki Kawazoe is a Senior Research Fellow and Professor Emeritus in New Industry Creation Hatchery Center, Tohoku University, Sendai, Japan. He also has his position in SRM Institute of Science and Technology, Chennai, India as an A.P.J. Abudl Kalam Distinguished Professor. He is the author of over 1,000 ISI journal papers with more than 20,000 citations (h-index 65), over 50 books, and 10 patents. He is the founder of ACCMS (Asian Consortium on Computational Materials Science) with the history of 20 years, and has provided scientific resources in both print and electronic formats to researchers in developing countries. He also contributed to start Japan Nano-Science and -Engineering Society 15 years ago and was the President. These societies are now well established around the world and continue to grow each year. He has been a Mega-grant Leader in Russian Academy of Science from 2012 to 2015 on gas hydrate research. He holds a number of positions in Japan and worldwide; an MRS India honorable member, Advisor Professor of Fudan University, China, Director of ICT Center of VietNam, President of NPO Center for Interdisciplinary Sciences, Advisor to Japan Gene Research Laboratory, and more. He has been invited by a number of research/teaching organizations, including Max-Planck Institute for Nuclear Physics, University of California in Berkeley, Kuwait Institute of Science and Technology, and The University of Tokyo. Ursula Carow-Watamura, Sendai, Japan
Introduction.- Data chapters for 5-component amorphous alloys from Ag-Al-Co-Cu-La to Nb-Ni-Ta-Ti-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).
Introduction.- Data chapters for 5-component amorphous alloys from Ag-Al-Co-Cu-La to Nb-Ni-Ta-Ti-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).