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Influence of Microstructure on Microhardness of Fe81Si4B13C2 Amorphous Alloy after Thermal Treatment
被引:3
|作者:
Minic, Dragica M.
[1
]
Blagojevic, Vladimir A.
[1
]
Minic, Dusan M.
[2
]
Gavrilovic, Aleksandra
[3
]
Rafailovic, Lidija
[3
]
Zak, Tomas
[4
]
机构:
[1] Univ Belgrade, Fac Phys Chem, Belgrade 11000, Serbia
[2] Mil Tech Inst, Belgrade 11000, Serbia
[3] CEST Kompetenzzentrum Elektrochem Oberflachentech, A-2700 Wiener Neustadt, Austria
[4] Acad Sci Czech Republ, Inst Phys Mat, Brno 61662, Czech Republic
来源:
METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE
|
2011年
/
42A卷
/
13期
关键词:
MECHANICAL-PROPERTIES;
ALPHA-FE;
CRYSTALLIZATION;
PHASE;
NANOCRYSTALLIZATION;
TEMPERATURE;
BEHAVIOR;
KINETICS;
D O I:
10.1007/s11661-011-0795-8
中图分类号:
T [工业技术];
学科分类号:
08 ;
摘要:
The influence of microstructure, and its changes, on microhardness of the amorphous Fe81Si4B13C2 alloy after thermal treatment at different temperatures from 298 K to 973 K (25 A degrees C to 700 A degrees C) was studied. The as-prepared alloy ribbon containing a small amount of crystalline phases, as well as domains of short-range crystalline ordering embedded in the amorphous matrix, exhibits unexpectedly high microhardness, mostly due to its composition. After thermal treatment above 723 K (450 A degrees C), the alloy samples begin to crystallize, creating a nanocomposite structure involving nanocrystals embedded in an amorphous matrix, leading to an increase in microhardness. Further growth of the nanocrystals, as the heating temperature was increased to 973 K (700 A degrees C), caused the change from nanocomposite structure into a more granulated and porous structure, with a dominant type of interface changing from amorphous/crystal to crystal/crystal, leading to a decrease in microhardness.
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页码:4106 / 4112
页数:7
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