• CN:11-2187/TH
  • ISSN:0577-6686

›› 2009, Vol. 45 ›› Issue (2): 192-198.

• 论文 • 上一篇    下一篇

基于研磨加工参数的亚表面损伤预测理论和试验研究

李圣怡;王卓;吴宇列;戴一帆   

  1. 国防科学技术大学机电工程与自动化学院
  • 发布日期:2009-02-15

Prediction Theory and Experiment of Subsurface Damage Based on Lapping Processing Parameters

LI Shengyi;WANG Zhuo;WU Yulie;DAI Yifan   

  1. School of Mechatronics Engineering and Automation, National University of Defence Technolog
  • Published:2009-02-15

摘要: 为实现研磨亚表面损伤深度的无损、快速和准确检测,并预测研磨参数对亚表面损伤深度的影响规律,针对光学材料研磨加工过程建立基于研磨加工参数的亚表面损伤深度预测模型。使用磁流变抛光斑点技术测量K9玻璃在不同研磨条件下的亚表面损伤深度,对上述预测模型进行试验验证。最后,提出以提高光学零件加工效率为目的的研磨加工策略。研究表明:建立的研磨亚表面损伤深度预测模型能够通过研磨加工参数对亚表面损伤深度进行有效的预测;研磨亚表面损伤深度与磨粒粒度、研磨盘硬度和研磨压强成正比关系,与研磨速度和研磨液浓度成反比关系;磨粒粒度对亚表面损伤深度的影响最显著,研磨压强的影响次之,研磨盘硬度、研磨速度和研磨液浓度的影响较小;为提高光学零件加工效率,建议在研磨过程中选取较高的研磨速度和较浓的研磨液,以在降低亚表面损伤深度的同时提高材料去除效率。

关键词: 磁流变抛光, 亚表面损伤, 研磨, 印压

Abstract: In order to realize the non-destructive, rapid, and accurate detection of subsurface damage (SSD) depth, a prediction model of SSD depth produced in lapping process of optical material is established. With this model, the influence law of lapping parameters on SSD can be predicted. Then, SSD depth of lapped K9 glass is measured by using magnetorheological finishing (MRF) spot technique in a bid to verify the validity of the prediction model. Finally, an effective lapping procedure is proposed to improve the machining efficiency of optical elements. The results show that SSD depth can be effectively predicted by using the prediction model according to lapping parameters. SSD depth is directly proportional to granularity of abrasive grains, hardness of lapping plate and lapping pressure, while inversely proportional to lapping velocity and concentration of lapping liquid. Moreover, the influence of granularity of abrasive grains on SSD depth is more significant than lapping pressure, and the influence of hardness of lapping plate, lapping velocity and concentration of lapping liquid are minor. In order to improve machining efficiency of optical elements, selecting a high lapping velocity and a high concentration of lapping liquid is suggested in order to reduce SSD depth and increase material removal rate simultaneously.

Key words: Indentation, Lapping, Magnetorheological finishing (MRF), Subsurface damage (SSD)

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