CaCu/sub 5/-type samarium-iron phase stabilized by zirconium addition
Journal Article
·
· J. Appl. Phys.; (United States)
Light rare-earth metals are not assumed to form compounds of the CaCu/sub 5/-type structure with iron. When zirconium was not added, the Th/sub 2/Zn/sub 17/-type rhombohedral structure existed in the samples of nominal composition SmFe/sub 5/ and SmFe/sub 7/. Samples of nominal composition (Sm/sub 1-//sub x/Zr/sub x/)Fe/sub 5/ and (Sm/sub 0.65/Zr/sub 0.35/)Fe/sub y/ were studied by x-ray diffraction and thermomagnetic analyses. Thermomagnetic analyses showed the existence of a new phase besides Sm/sub 2/Fe/sub 17/. X-ray diffraction analyses showed the new phase has a CaCu/sub 5/-type structure. Lattice parameters and Curie temperatures of these samples were measured.
- Research Organization:
- Department of Physics, Peking University, Beijung, People's Republic of China
- OSTI ID:
- 5329672
- Journal Information:
- J. Appl. Phys.; (United States), Vol. 63:8
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
36 MATERIALS SCIENCE
IRON ALLOYS
CRYSTAL STRUCTURE
X-RAY DIFFRACTION
SAMARIUM ALLOYS
ZIRCONIUM ALLOYS
CURIE POINT
EXPERIMENTAL DATA
HIGH TEMPERATURE
LATTICE PARAMETERS
PHASE TRANSFORMATIONS
THERMOMAGNETISM
ZIRCONIUM ADDITIONS
ALLOYS
COHERENT SCATTERING
DATA
DIFFRACTION
INFORMATION
MAGNETISM
NUMERICAL DATA
PHYSICAL PROPERTIES
RARE EARTH ALLOYS
SCATTERING
THERMODYNAMIC PROPERTIES
TRANSITION TEMPERATURE
360102* - Metals & Alloys- Structure & Phase Studies
IRON ALLOYS
CRYSTAL STRUCTURE
X-RAY DIFFRACTION
SAMARIUM ALLOYS
ZIRCONIUM ALLOYS
CURIE POINT
EXPERIMENTAL DATA
HIGH TEMPERATURE
LATTICE PARAMETERS
PHASE TRANSFORMATIONS
THERMOMAGNETISM
ZIRCONIUM ADDITIONS
ALLOYS
COHERENT SCATTERING
DATA
DIFFRACTION
INFORMATION
MAGNETISM
NUMERICAL DATA
PHYSICAL PROPERTIES
RARE EARTH ALLOYS
SCATTERING
THERMODYNAMIC PROPERTIES
TRANSITION TEMPERATURE
360102* - Metals & Alloys- Structure & Phase Studies