An overview and critical assessment of the mechanisms of microstructural refinement during ultrasonic solidification of metals

被引:26
作者
Balasubramani, Nagasivamuni [1 ]
Venezuela, Jeffrey [1 ]
Yang, Nan [1 ]
Wang, Gui [1 ]
StJohn, David [1 ]
Dargusch, Matthew [1 ]
机构
[1] Univ Queensland, Ctr Adv Mat Proc & Mfg AMPAM, Sch Mech & Min Engn, St Lucia, Qld 4072, Australia
基金
澳大利亚研究理事会;
关键词
Ultrasonic treatment; Grain refinement; Intermetallic refinement; Solidification; Light metals; Zinc alloys; HIGH-INTENSITY ULTRASOUND; GRAIN-REFINEMENT; EQUIAXED GRAINS; ALUMINUM-ALLOYS; MELT TREATMENT; CU ALLOY; MAGNESIUM ALLOYS; MASTER ALLOY; CAST ZINC; AL;
D O I
10.1016/j.ultsonch.2022.106151
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
A refined, equiaxed grain structure and the formation of finer primary intermetallic phases are some of the notable benefits of ultrasonic processing of liquid/solidifying melts. Ultrasonic treatment (UST) has been widely explored in Al and Mg-based alloys due to its operational versatility and scalability. During UST, the refinement of grain and primary intermetallic phases occurs via cavitation-induced fragmentation mechanisms. In addition, UST improves the efficiency (activation of particles) of the conventional grain refinement process when potent particles are added through master alloys. Though the UST's ability to produce refined as-cast structures is well recognized, the understanding of the refinement mechanisms is still debated and unresolved. Significant efforts have been devoted to understanding these mechanisms through the use of sophisticated techniques such as insitu/ real-time observation, lab-scale and commercial-scale casting processes. All these studies aim to demonstrate the significance of cavitation, fragmentation modes, and alloy chemistry in microstructure refinement. Although the physical effects of cavitation and acoustic streaming (fluid flow) are primary factors influencing the refinement, the dominant grain refinement mechanisms are affected by several solidification variables and casting conditions. Some of these include melt volume, solute, cooling rate, potent particles, grain growth (equiaxed, columnar or dendritic), and the cold zones of the casting where the onset of nucleation occurs. This review aims to provide a better insight into solidification variables emphasizing the importance of cold zones in generating fine structures for small- and large-volume (direct chill) castings. Another important highlight of this review is to present the relatively less explored mechanism of (acoustic) vibration-induced crystallization and discuss the role of cavitation in achieving a refined ingot structure.
引用
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页数:16
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