首页|Synthesis and grain growth kinetics of in-situ FeAl matrix nanocomposites(I): Mechanical alloying of Fe-Al-Ti-B composite powder

Synthesis and grain growth kinetics of in-situ FeAl matrix nanocomposites(I): Mechanical alloying of Fe-Al-Ti-B composite powder

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Three nanocrystalline alloys, Fe_(50)Al_(50), Fe_(42.5)Al_(42.5)Ti_5B_(10) and Fe_(35)Al_(35)Ti_(10)B_(20) (molar fraction, %), were synthesized from elemental powders by high-energy ball milling. The structural evolutions and morphological changes of the milled powders were characterized by X-ray diffractometry(XRD), transmission electron microscopy(TEM) and scanning electron microscopy(SEM). The effects of different Ti, B additions on the structure and phase transformation in these alloys were also discussed. It is observed that the diffusion of Al, Ti, B atoms into Fe lattice occurs during milling, leading to the formation of a BCC phase identified as Fe(Al) or Fe(Al, Ti, B) supersaturated solid solution. Fe-based solid solution with nanocrystalline structure is observed to be present as the only phase in all the alloy compositions after milling. Furthermore, the contents of Ti, B affect the formation of mechanical alloying products, changes in the lattice parameter as well as the grain size.

REN Rong、WU Yu-cheng、TANG Wen-ming、WANG Feng-tao、WANG Tu-gen、ZHENG Zhi-xiang

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2007

Transactions of Nonferrous Metals Society of China

Transactions of Nonferrous Metals Society of China

ISTP
ISSN:1003-6326
年,卷(期):2007.17(5)