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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Thermal Effect at the Incipient Stage of Cavitation Erosion on a Stainless Steel in Ultrasonic Vibration Cavitation
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Thermal Effect at the Incipient Stage of Cavitation Erosion on a Stainless Steel in Ultrasonic Vibration Cavitation

机译:超声振动空化中不锈钢空化侵蚀初期的热效应

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摘要

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 300 deg C. 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.
机译:进行了超声振动汽蚀实验,以研究腐蚀过程中的热效应。在空化腐蚀的初期,在腐蚀坑周围的样品表面上观察到了环形影响区。表面粗糙度,硬度和化学成分的表面测试结果表明,该区域是由热效应引起的,并且该区域的表面经历了温度高于300摄氏度的回火过程。数值模拟结果表明,高温气泡中直接与固体壁接触的区域是在区域表面上进行回火过程的必要条件,否则在气泡中温度梯度大的影响下,气泡中的热量很难传递到固体壁上以及水中的快速冷却过程。

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