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Mechanisms of the Origin of Fine and Non-Dendritic Grains at the Sonotrode–Liquid Metal Interface During Ultrasonic Solidification of Metals

  • 15-04-2021
  • Original Research Article
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Abstract

The article delves into the mechanisms behind the origin of fine and non-dendritic grains at the sonotrode–liquid metal interface during ultrasonic solidification of metals. It discusses the roles of cavitation, pressure, and thermal undercooling in grain refinement, highlighting the importance of thermal undercooling in the formation of equiaxed grains. The study focuses on two systems: high-purity, low-melting temperature Zn and Mg–6 wt% Zn alloy. It proposes a plausible mechanism for effective refinement using ultrasonic treatment and compares the refinement achieved in different alloys. The article also presents experimental results and discusses the operating zones during ultrasonic treatment that influence grain refinement. The findings suggest that thermal undercooling near the cavitation zone is the most influential factor for the formation of equiaxed grains, and the origin of fine grains can be explained by the immediate formation and separation of a layer of solidified grains beneath the sonotrode surface.

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Title
Mechanisms of the Origin of Fine and Non-Dendritic Grains at the Sonotrode–Liquid Metal Interface During Ultrasonic Solidification of Metals
Authors
Nagasivamuni Balasubramani
Gui Wang
David H. StJohn
Matthew S. Dargusch
Publication date
15-04-2021
Publisher
Springer US
Published in
Metallurgical and Materials Transactions A / Issue 6/2021
Print ISSN: 1073-5623
Electronic ISSN: 1543-1940
DOI
https://doi.org/10.1007/s11661-021-06264-y
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