MICROSTRUCTURAL TRANSITIONS DURING CONTAINERLESS PROCESSING OF UNDERCOOLED FE-NI ALLOYS

被引:61
|
作者
THOMA, DJ
PEREPEZKO, JH
机构
[1] Department of Materials Science and Engineering, University of Wisconsin-Madison, Madison, 53706, WI
关键词
D O I
10.1007/BF02665066
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The microstructural development associated with solidification in undercooled Fe-Ni alloys has been reported in different studies to follow various pathways, with apparent dissimilarities existing as a function of sample size and processing conditions. In order to identify the possible hierarchy of microstructural pathways and transitions, a systematic evaluation of the microstructural evolution in undercooled Fe-Ni alloys was performed on uniformly processed samples covering seven orders of magnitude in volume. At appropriate undercooling levels, alternate solidification pathways become thermodynamically possible and metastable product structures can result from the operation of competitive solidification kinetics. For thermal history evaluation, a heat flow analysis was applied and tested with large Fe-Ni alloy particles (1 to 3 mm) to assess undercooling potential. Alloy powders (10 to 150-mu-m), with large liquid undercoolings, were studied under the same composition and processing conditions to evaluate the solidification kinetics and microstructural evolution, including face-centered cubic (fcc)/body-centered cubic (bcc) phase selection and the thermal stability of a retained metastable bcc phase. The identification of microstructural transitions with controlled variations in sample size and composition during containerless solidification processing was used to develop a microstructure map which delineates regimes of structural evolutions and provides a unified analysis of experimental observations in the Fe-Ni system.
引用
收藏
页码:1347 / 1362
页数:16
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