The s-d transition and high-pressure phase stability of transition metals
The recent discovery of a solid-solid phase change in shock- compressed Mo and the theoretical interpretation suggest valence d-electron density as a major influence on structural stability. The relationship of this experimental result to the transition metal structures and alloy phase diagrams will be discussed. Specific predictions will be presented for the locations and slopes of transition metal and transition metal alloy phase boundaries. 9 refs., 1 fig., 1 tab.
- Research Organization:
- Los Alamos National Laboratory (LANL), Los Alamos, NM (United States)
- DOE Contract Number:
- W-7405-ENG-36
- OSTI ID:
- 6053093
- Report Number(s):
- LA-UR-89-2486; CONF-890798-5; ON: DE89015345
- Resource Relation:
- Journal Volume: 4; Journal Issue: 1-6; Conference: AIRAPT and EHPRG international high pressure science and technology conference, Paderborn, Germany, F.R., 17-21 Jul 1989; Other Information: Portions of this document are illegible in microfiche products
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
36 MATERIALS SCIENCE
MOLYBDENUM
PHASE TRANSFORMATIONS
RUTHENIUM
CRYSTAL STRUCTURE
ELECTRONIC STRUCTURE
FREE ENTHALPY
PHASE DIAGRAMS
STABILITY
TRANSITION ELEMENTS
DIAGRAMS
ELEMENTS
ENERGY
METALS
PHYSICAL PROPERTIES
PLATINUM METALS
THERMODYNAMIC PROPERTIES
360102* - Metals & Alloys- Structure & Phase Studies
MOLYBDENUM
PHASE TRANSFORMATIONS
RUTHENIUM
CRYSTAL STRUCTURE
ELECTRONIC STRUCTURE
FREE ENTHALPY
PHASE DIAGRAMS
STABILITY
TRANSITION ELEMENTS
DIAGRAMS
ELEMENTS
ENERGY
METALS
PHYSICAL PROPERTIES
PLATINUM METALS
THERMODYNAMIC PROPERTIES
360102* - Metals & Alloys- Structure & Phase Studies