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Ultrasonic Cavitation Treatment of Metallic Alloys
Iakovos Tzanakis and Dmitry Eskin
2020
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This Special Issue scrutinizes the use of ultrasonic-cavitation melt treatment in technology of high-quality metallic alloys with improved mechanical properties, and assesses the driving mechanisms of cavitation-induced effects, such as grain refinement, degassing, wetting, and particle distribution. In this context, the research published in this Special Issue considers the interaction between the cavitation field and acoustic streaming with the melt flow and the suspended solid/liquid phases, the characterization and mapping of cavitation activity in a melt volume, and the possibility of achieving high efficiency in processing large melt volumes through technological approaches for the commercial implementation of ultrasonic processing technology.
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Keywords
- acoustic cavitation
- acoustic streaming
- aluminium
- Aluminium alloys
- aluminum alloy
- contactless sonotrode
- experimental verification
- grain refinement
- History of engineering & technology
- induction processing
- ingot solidification
- interdependence model
- L-shaped ceramic sonotrode
- magnesium alloys
- Mathematical model
- metal solidification
- mushy zone
- non-linear bubble dynamics
- numerical modelling
- sonoprocessing
- sump evolution
- synchrotron X-ray imaging
- Technology, engineering, agriculture
- Technology: general issues
- ultrasonic bubble clouds
- ultrasonic DC casting
- ultrasonic melt treatment
- ultrasonic treatment
- ultrasound melt processing
- unsteady flow phenomena
- Zinc