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Influence of ultrasonic vibration on mechanical properties and microstructure of 1Cr18Ni9Ti stainless steel
AbstractThe effect of ultrasonic vibration on the mechanical properties and microstructure of 1Cr18Ni9Ti stainless steel is investigated. Along the horizontal direction, the molten alloy is treated by ultrasonic power of 400W, 500W, 600W and 700W, respectively. Experiment results show that considerable improvement of mechanical properties can be achieved attributing to the ultrasonic treatments. Furthermore, with the effect of radiation force of ultrasonic, long dendritic microstructure is broken into pieces. In particle, when ultrasonic power reaches to 700W, long dendritic microstructure is disappeared and transformed into equiaxed one. Base on the experimental results and theoretical deduction, it is confirmed that radiation force induced by ultrasonic plays a decisive role in structure refinement.
Influence of ultrasonic vibration on mechanical properties and microstructure of 1Cr18Ni9Ti stainless steel
AbstractThe effect of ultrasonic vibration on the mechanical properties and microstructure of 1Cr18Ni9Ti stainless steel is investigated. Along the horizontal direction, the molten alloy is treated by ultrasonic power of 400W, 500W, 600W and 700W, respectively. Experiment results show that considerable improvement of mechanical properties can be achieved attributing to the ultrasonic treatments. Furthermore, with the effect of radiation force of ultrasonic, long dendritic microstructure is broken into pieces. In particle, when ultrasonic power reaches to 700W, long dendritic microstructure is disappeared and transformed into equiaxed one. Base on the experimental results and theoretical deduction, it is confirmed that radiation force induced by ultrasonic plays a decisive role in structure refinement.
Influence of ultrasonic vibration on mechanical properties and microstructure of 1Cr18Ni9Ti stainless steel
Qingmei, Liu (Autor:in) / Yong, Zhang (Autor:in) / Yaoling, Song (Autor:in) / Feipeng, Qi (Autor:in) / Qijie, Zhai (Autor:in)
25.04.2006
4 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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