Journal Article10.1016/J.ACTAMAT.2011.05.028
Solidification interface morphology pattern in the undercooled Co-24.0 at.% Sn eutectic melt
Liufa Liu,Jianfeng Li,Y.H. Zhou +2 more
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TL;DR: In this article, the dependence of solidification behavior on undercooling was established based on the experimental results of the solidification microstructure, crystal orientation and crystal growth velocity.
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About: This article is published in Acta Materialia. The article was published on 01 Aug 2011. The article focuses on the topics: Eutectic bonding & Eutectic system.
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Citations
Remelting-induced anomalous eutectic formation during solidification of deeply undercooled eutectic alloy melts
TL;DR: In this paper, anomalous eutectics are argued to form due to the remelting of the primary solid during solidification of deeply undercooled eUTectic alloy melts.
71
Rapid solidification kinetics and mechanical property characteristics of Ni–Zr eutectic alloys processed under electromagnetic levitation state
TL;DR: In this article, a systematic analysis of the competitive growth mode between the primary phase and eutectic structure was conducted for three types of alloys (hypoeutective Ni-5 at.%Zr, eUTectic Ni-8.% Zr and hypereutectical Ni-13 at.%.
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Seaweed eutectic-dendritic solidification pattern in a CoCrFeNiMnPd eutectic high-entropy alloy
TL;DR: In this paper, a CoCrFeNiMnPd eutectic high-entropy alloy was designed and prepared, and a unique EUTectic-dendritic solidification pattern was observed in the as-cast alloy.
66
The origin of anomalous eutectic structures in undercooled Ag–Cu alloy
TL;DR: In this article, a melt encasement (fluxing) method was used to undercool Ag-Cu alloy at its eutectic composition, and the recalescence of the undercooled alloy was filmed at a high frame rate.
61
In situ observation of remelting induced anomalous eutectic structure formation in an undercooled Ni-18.7 at.% Sn eutectic alloy
TL;DR: In this article, the authors conducted in situ observation of the AES forming process in an Ni-18.7 at.% Sn eutectic alloy using a high-temperature laser scanning confocal microscope.
58
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TL;DR: In this paper, the authors review the most important findings in this technologically important area that impact Our quantitative understanding of: (i) key anisotropic properties of the solid liquid interface that govern solidification pattern evolution, including the solid-liquid interface free energy and the kinetic coefficient; (ii) dendritic solidification at small and large growth rates.
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