Phase selection and re-melting-induced anomalous eutectics in undercooled Ni–38 wt% Si alloys

被引:0
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作者
Cun Lai
Haifeng Wang
Qian Pu
Tingting Xu
Jinsong Yang
Xi Zhang
Feng Liu
机构
[1] Northwestern Polytechnical University,State Key Laboratory of Solidification Processing
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关键词
Mushy Zone; High Undercooling; Critical Undercooling; Anomalous Eutectic; NiSi2 Phase;
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摘要
The Ni–38 wt% Si alloy whose eutectic products are two stoichiometric intermetallic compounds (i.e., NiSi and NiSi2) was undercooled by the melt fluxing technique. After in situ observations of the recalescence processes using a high-speed camera and by electron back-scattering diffraction analysis of the solidification microstructures, the crystal growth velocities, phase selection, and microstructure evolutions were studied. Due to a growth-controlled mechanism, the primary phase changes from the NiSi to the NiSi2 phase at a critical undercooling ΔT ≈ 48 K. Even in the absence of the driving force of chemical superheating, the transition from regular eutectics to anomalous eutectics happens. The reason is that the single-phase dendrite of NiSi2 phase solidifies firstly and then the NiSi phase grows epitaxially to form an uncoupled eutectic-dendrite at high undercooling. The present work provides further experimental evidences for the dual origins of anomalous eutectics (e.g., uncoupled eutectic-dendrite growth during the recalescence stage and coupled lamellar eutectic growth at low undercooling during the post-recalescence stage) and is helpful for understanding of non-equilibrium phenomena in undercooled melts.
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页码:10990 / 11001
页数:11
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