李永春,祝锡晶,郭策,王建青.超声珩磨区实际气体的单空泡动力学分析[J].,2014,33(6):528-533 |
超声珩磨区实际气体的单空泡动力学分析 |
Single bubble dynamics analysis of the real gas in ultrasonic honing area |
投稿时间:2014-01-14 修订日期:2014-11-03 |
中文摘要: |
为进一步揭示功率超声振动的珩磨机理,以珩磨液为工作介质,研究了功率超声珩磨环境中实际气体的单空泡动力学特性。基于Rayleigh-Plesset方程,应用实际气体绝热方程和范德瓦尔斯方程对其进行了修正,建立了功率超声珩磨环境中实际气体的单空泡动力学方程。并运用4-5阶Runge-Kutta法模拟了不同超声条件(声压幅值、空泡初始半径、振动频率)对泡壁的运动以及运动速度的影响。结果表明:较高的声压幅值,共振尺寸附近的空泡初始半径以及较低的超声频率有利于超声珩磨磨削区空化效应的发生。 |
英文摘要: |
In order to reveal the mechanism of power ultrasonic vibration honing, the single bubble dynamic characteristics of the real gas was researched in honing liquid. Rayleigh-Plesset equation was modified by the real gas adiabatic equation and van der Waals equation.The single bubble dynamics equations of real gas in ultrasonic honing environment was established.The effects of different ultrasound conditions(sound pressure amplitude, the initial bubble radius, vibration frequency)to motion and velocity of the bubble wall was simulated by using 4-5 order Runge-Kutta method. The results show that: the higher the sound pressure amplitude, resonance cavity near the size of the initial radius and lower ultrasonic frequency was advantaged to the cavitation effect occured in the ultrasonic honing zone. |
DOI:10.11684/j.issn.1000-310X.2014.06.009 |
中文关键词: 超声珩磨 空化泡 实际气体 数值模拟 |
英文关键词: Ultrasonic honing Cavitation bubble real gas numerical simulation |
基金项目:国家自然科学基金项目(51275490、50975265); 研究生科技基金(20131024) |
|
摘要点击次数: 2522 |
全文下载次数: 1890 |
查看全文
查看/发表评论 下载PDF阅读器 |
关闭 |