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Effect of ultrasound on dynamics characteristic of the cavitation bubble in grinding fluids during honing process

机译:超声波在珩磨过程中磨削液中空化泡沫动力学特性的影响

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摘要

The effect of ultrasound on generating and controlling the cavitation bubble of the grinding fluid during ultrasonic vibration honing was investigated. The grinding fluid on the surface of the honing stone was measured by utilizing the digital microscope VHX-600ESO. Based on analyzing the cavitation mechanism of the grinding fluid, the bubble dynamics model under conventional honing (CH) and ultrasonic vibration honing (UVH) was established respectively. Difference of dynamic behaviors of the bubble between the cases in UVH and CH was compared respectively, and the effects of acoustic amplitude and ultrasonic frequency on the bubble dynamics were simulated numerically using the Runge-Kutta fourth order method with variable step size adaptive control. Finally, the cavitation intensity of grinding fluids under ultrasound was measured quantitatively using acoustimeter. The results showed that the grinding fluid subjected to ultrasound can generate many bubbles and further forms numerous groups of araneose cavitation bubbles on the surface of the honing stone. The oscillation of the bubble under UVH is more intense than the case under CH, and the maximum velocity of the bubble wall under UVH is higher two magnitudes than the case under CH. For lower acoustic amplitude, the dynamic behaviors of the bubble under UVH are similar to that case under CH. As increasing acoustic amplitude, the cavitation intensity of the bubble is growing increased. Honing pressure has an inhabitation effect on cavitation effect of the grinding fluid. The perfect performance of cavitation of the grinding fluid can be obtained when the device of UVH is in the resonance. However, the cavitation intensity of the grinding fluid can be growing weakened with increasing ultrasonic frequency, when the device of UVH is in the off-resonance. The experimental results agree with the theoretical and numerical analysis, which provides a method for exploring applications of the cavitation effect in ultrasonic
机译:研究了超声波在超声振动珩磨期间产生和控制研磨流体的空化泡沫的影响。通过利用数字显微镜VHX-600ESO测量珩磨石表面上的研磨液。基于分析研磨流体的空化机构,分别建立了常规珩磨(CH)和超声振动珩磨(UVH)下的气泡动力学模型。分别比较了UVH和CH壳体之间的气泡的动态行为的差异,并使用具有可变步长自适应控制的跳动-Kutta第四阶方法在数值上模拟了气泡动力学对气泡动力学的影响。最后,使用分光仪定量测量超声波磨削液的空化强度。结果表明,经受超声的研磨流体可以产生许多气泡,并且进一步形成珩磨石表面上的许多芳樟醇环藻族气泡。 UVH下的气泡的振荡比CH下的情况更强烈,并且UVH下的气泡壁的最大速度比CH下的情况较高两倍。对于较低的声学幅度,UVH下的气泡的动态行为类似于CH下的这种情况。随着声学幅度的增加,气泡的空化强度越来越大。珩磨压力对研磨液的空化效果具有鉴别效果。当UVH的器件处于共振时,可以获得研磨流体的空化性能的完美性能。然而,当UVH的装置处于偏移时,磨削液的空化强度随着超声波频率的增加而越来越弱。实验结果与理论和数值分析一致,它提供了一种探索超声波空化效果应用的方法

著录项

  • 来源
    《Ultrasonics》 |2018年第2018期|共12页
  • 作者

    Guo Ce; Zhu Xijing;

  • 作者单位

    Taiyuan Univ Technol Shanxi Key Lab Precis Machining Taiyuan 030024 Shanxi Peoples R China;

    North Univ China Sch Mech &

    Power Engn Shanxi Key Lab Adv Mfg Technol Taiyuan 030051 Shanxi Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 超声学;
  • 关键词

    Ultrasound; Cavitation; Honing; Bubble; Dynamics model;

    机译:超声波;空化;珩磨;泡沫;动力学模型;

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