静电悬浮条件下液态 Zr60Ni25Al15 合金的热物理性质与快速凝固机制

Translated title of the contribution: Thermophysical properties and rapid solidification mechanism of liquid Zr60Ni25Al15 alloy under electrostatic levitation condition

Ying Jie Jin, De Lu Geng, Mao Jie Lin, Liang Hu, Bing Bo Wei

Research output: Contribution to journalArticlepeer-review

Abstract

In this study, the thermophysical properties and rapid solidification mechanism of highly undercooled liquid Zr60Ni25Al15 alloy are investigated through the electrostatic levitation technique. The maximum undercooling of this alloy reaches 316 K (0.25TL). Both density and surface tension display a linear relationship with temperature, while viscosity is related to temperature exponentially. When alloy undercooling is less than 259 K, two significant recalescence events are observed during solidification, corresponding to the formation of pseudobinary (Zr6Al2Ni + Zr5Ni4Al) eutectic and ternary (Zr6Al2Ni + Zr5Ni4Al + Zr2Ni) eutectic. The growth velocity of the binary eutectic phase gradually increases with further undercooling and reaches a maximum undercooling value of 259 K. In contrast, once undercooling exceeds 259 K, a single recalescence event occurs, leading to the independent nucleation of all three compound phases from alloy melt and the rapid growth of a ternary anomalous eutectic structure. Notably, the growth velocity of the ternary eutectic phase exhibits a gradual decline with further undercooling. This diminishing trend of the growth velocity suggests that further undercooling might entirely suppress crystal growth dynamically at a threshold of 385 K. With classical nucleation theory and the Kolmogorov-Johnson-Mehl-Avrami (KJMA) model, the onsets of crystallization for the three phases are calculated, thereby constructing a time–temperature-transformation (TTT) diagram. This diagram elucidates the competitive nucleation among the three phases in the undercooled melt. Both theoretical and experimental evidence reveal that Zr6Al2Ni phase is primarily nucleated at lower undercooling levels, whereas under higher cooling condition, it is possible for all three phases to nucleate simultaneously.

Translated title of the contributionThermophysical properties and rapid solidification mechanism of liquid Zr60Ni25Al15 alloy under electrostatic levitation condition
Original languageChinese (Traditional)
Article number086401
JournalWuli Xuebao/Acta Physica Sinica
Volume73
Issue number8
DOIs
StatePublished - 20 Apr 2024

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