DocumentCode :
438208
Title :
Crystallization behavior in two-phase PrFeB mechanically milled powder
Author :
Marinescu, M. ; Zhang, Y. ; Gabay, Alexander M. ; Hadjipanayis, G.C.
Author_Institution :
Dept. of Phys. & Astron., Delaware Univ., Newark, DE, USA
fYear :
2005
fDate :
4-8 April 2005
Firstpage :
331
Lastpage :
332
Abstract :
In this research, PrFeB-based mechanically milled powders are studied with emphasis on the microstructure peculiarities, phase transformations and their relation with the magnetic properties. X-ray diffraction data of Pr9Fe85B6 and Pr9DyFe76Co8SiB5 powders milled for 4 h reveal a structure free of long range crystallographic ordering. Annealing at 400°C (27 h), 500°C (30 min), and 680°C (150 min) is done for the mechanically milled powders. Results show that a well-defined nanophase structure is developed by annealing above 500°C. HRTEM micrographs in as-milled powder reveal the presence of bcc (Fe, Co) phase with an average grain size of about 10-15 nm, and an amorphous phase. Annealing the powder at temperatures as high as 400°C still does not release the internal stress caused by the energetic collision of the powder particles during milling. The microstructure becomes free of internal stresses and completely crystallizes at 650°C.
Keywords :
X-ray diffraction; annealing; boron alloys; cobalt alloys; crystallisation; dysprosium alloys; ferromagnetic materials; grain size; internal stresses; iron alloys; long-range order; milling; noncrystalline structure; powders; praseodymium alloys; silicon alloys; transmission electron microscopy; 150 min; 27 h; 30 min; 400 degC; 500 degC; 680 degC; HRTEM; Pr9DyFe76Co8SiB5; Pr9Fe85B6; X-ray diffraction; amorphous phase; annealing; crystallization; energetic collision; grain size; internal stress; long range crystallographic ordering; mechanically milled powders; microstructure; phase transformations; well-defined nanophase structure; Annealing; Crystallization; Crystallography; Grain size; Internal stresses; Iron; Magnetic properties; Microstructure; Powders; X-ray diffraction;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Magnetics Conference, 2005. INTERMAG Asia 2005. Digests of the IEEE International
Print_ISBN :
0-7803-9009-1
Type :
conf
DOI :
10.1109/INTMAG.2005.1463594
Filename :
1463594
Link To Document :
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