B-Fe-P (141)
Chapter Concepts
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Substances / Molecular Formulas |
B-Fe-P amorphous alloy |
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| Element Systems | B-Fe-P |
| Properties | Curie temperature; Mössbauer spectrum; critical thickness; crystallization temperature; electrical resistivity; embrittlement temperature; glass transition temperature; hardness; magnetic moment; magnetization; polarization curve; relaxation enthalpy; stress-strain curve |
| Keywords | B-Fe-P (141); amorphous alloy; glass transition; metallic glass; physical property; ternary alloy |
Source
| Title | B-Fe-P (141) |
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| Author | U. Carow-Watamura, D. V. Louzguine, A. Takeuchi | |
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| Part of | Landolt-Börnstein - Group III Condensed Matter | |
| Numerical Data and Functional Relationships in Science and Technology | ||
| Volume | 37B2: Physical Properties of Ternary Amorphous Alloys. Part 2: Systems from B-Be-Fe to Co-W-Zr |
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| Edited by | Y. Kawazoe, U. Carow-Watamura, J.-Z. Yu | |
| Chapter-DOI | 10.1007/978-3-642-13850-8_41 | |
| Book-DOI | 10.1007/978-3-642-13850-8 (Volume in Bookshelf) |
Cite as
| RIS-Export | Carow-Watamura, U., Louzguine, D. V., Takeuchi, A.: B-Fe-P (141). Kawazoe, Y., Carow-Watamura, U., Yu, J.-Z. (ed.). SpringerMaterials - The Landolt-Börnstein Database (http://www.springermaterials.com). Springer-Verlag Berlin Heidelberg, 2011. DOI: 10.1007/978-3-642-13850-8_41 |
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Abstract
| B-Fe-P (141), part of 'Landolt-Börnstein - Group III Condensed Matter: Numerical Data and Functional Relationships in Science and Technology, Volume 37B2: Physical Properties of Ternary Amorphous Alloys. Part 2: Systems from B-Be-Fe to Co-W-Zr'. | |
| This document is part of Part 2 'Systems from B-Be-Fe to Co-W-Zr' of Subvolume B 'Physical Properties of Ternary Amorphous Alloys' of Volume 37 'Phase Diagrams and Physical Properties of Nonequilibrium Alloys' of Landolt-Börnstein - Group III 'Condensed Matter'. It contains the Chapter 'B-Fe-P (141)' with the content: 2.4.1 Glass Transition Temperature 2.5 Crystallization Temperature 2.5.1 Heat of Crystallization or Relaxation 2.8 Critical Quantities for Formation of Amorphous Phase 3.1 Stress-Strain Curve 3.5 Hardness 3.10 Embrittlement 4.1 Thermomagnetic Curve 4.1.1 Curie Temperature 4.3.1 Magnetic Moment and Magnetic Anisotropy 4.8 Mössbauer Spectra 5.1 Resistivity and Conductivity 6.1 Potentiostatic and Potentiodynamic Polarization Curve |
