Document details

The combined effect of melt stirring and ultrasonic agitation on the degassing ...

Author(s): Puga, Hélder cv logo 1 ; Barbosa, J. cv logo 2 ; Teixeira, J. Carlos cv logo 3 ; Seabra, Eurico cv logo 4 ; Ribeiro, Carlos Silva cv logo 5 ; Prokic, Miodrag cv logo 6

Date: 2009

Persistent ID: http://hdl.handle.net/1822/12414

Origin: RepositóriUM - Universidade do Minho

Subject(s): Aluminium; Porosity; Ultrasonic; Degassing


Description
The combined effect of high intensity ultrasound and melt stirring on the degassing of AlSi9Cu3 using simultaneously the novel MMM (Multi-frequency Multimode Modulated) ultrasonic technology to promote cavitation, and low frequency mechanical vibration to induce melt stirring, was studied. On a first stage single low frequency mechanical vibration experiments were carried out in water in order to visualize and characterize its individual effect on the liquid dynamics. On a second stage ultrasonic vibration combined with different mechanical vibration frequencies, melt temperatures and processing times were tested in liquid AlSi9Cu3 alloy and their influence on the degassing efficiency was evaluated and compared with the results of the single MMM ultrasonic degassing technique. Fixed ultrasonic parameters (frequency and electric power) were used, according to the best results obtained in former experimental works developed by the authors. For the experimental conditions used in this research, it was found that melt stirring significantly improves degassing efficiency, and such improvement depends on the metal temperature and the mechanical vibration frequency. The experimental results suggest that combining melt agitation and ultrasonic vibration it is possible to achieve almost the aluminum alloy theoretical density without increasing the processing time.
Document Type Article
Language English
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