An ultrasonic vibration cavitation erosion experiment was performed to study the thermal effect during the erosion process. The ring affected zone was observed on the sample surface around the erosion pit at the incipient stage of the cavitation erosion. The results of the surface testing on roughness, hardness, and chemical composition proved that the zone was caused by thermal effect, and that the zone surface experienced a tempering process with the temperature higher than . Numerical simulation results show that the high temperature domain in the bubble directly contacting the solid wall is a necessary condition for the occurrence of the tempering process on the zone surface, or the heat in the bubble can hardly be transferred to the solid wall under the effects of the great temperature gradient in the bubble and the quick cooling process in the water.
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February 2009
Technical Briefs
Thermal Effect at the Incipient Stage of Cavitation Erosion on a Stainless Steel in Ultrasonic Vibration Cavitation
Chen Haosheng,
Chen Haosheng
State Key Laboratory of Tribology,
e-mail: chenhs@mail.tsinghua.edu.cn
Tsinghua University
, Beijing 100084, China
Search for other works by this author on:
Li Jiang,
Li Jiang
Mechanical Engineering School,
University of Science and Technology Beijing
, Beijing 100083, China
Search for other works by this author on:
Liu Shihan
Liu Shihan
State Key Laboratory of Tribology,
Tsinghua University
, Beijing 100084, China
Search for other works by this author on:
Chen Haosheng
State Key Laboratory of Tribology,
Tsinghua University
, Beijing 100084, Chinae-mail: chenhs@mail.tsinghua.edu.cn
Li Jiang
Mechanical Engineering School,
University of Science and Technology Beijing
, Beijing 100083, China
Liu Shihan
State Key Laboratory of Tribology,
Tsinghua University
, Beijing 100084, ChinaJ. Fluids Eng. Feb 2009, 131(2): 024501 (3 pages)
Published Online: January 9, 2009
Article history
Received:
June 12, 2007
Revised:
May 3, 2008
Published:
January 9, 2009
Citation
Haosheng, C., Jiang, L., and Shihan, L. (January 9, 2009). "Thermal Effect at the Incipient Stage of Cavitation Erosion on a Stainless Steel in Ultrasonic Vibration Cavitation." ASME. J. Fluids Eng. February 2009; 131(2): 024501. https://doi.org/10.1115/1.3054282
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