• CN:11-2187/TH
  • ISSN:0577-6686

机械工程学报 ›› 2015, Vol. 51 ›› Issue (17): 184-193.doi: 10.3901/JME.2015.17.184

• 制造工艺与装备 • 上一篇    下一篇

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高效磁流变平整加工中的励磁装置优化及试验研究

王永强1,2,尹韶辉1,2,魏长青1,2,陈逢军1,2,罗虎2,3,龚胜2,3   

  1. 1.湖南大学智能激光制造研究中心;
    2.湖南大学国家高效磨削工程技术研究中心
    3.长沙纳美特超精密制造技术有限公司 长沙 430100
  • 出版日期:2015-09-05 发布日期:2015-09-05
  • 基金资助:
    国家自然科学基金(51205120)和国际科技合作(2014DFG72480)资助项目

Modeling and Prediction of White Layer Thickness in Dry and Hard Machining of Hardened Steel

WANG Yongqiang1,2, YIN Shaohui1,2, WEI Changqing1,2, CHEN Fengjun1,2, LUO Hu2,3, GONG Sheng2,3   

  1. 1.Center for Intelligent Laser Manufacturing, Hunan University;
    2.National Engineering Research Center for High Efficiency Grinding, Hunan University;
    3.Changsha Nanometer Ultra-precision Manufacturing Technology Corp. Ltd.
  • Online:2015-09-05 Published:2015-09-05

摘要: 提出一种具有直线气隙的永磁轭励磁方法以形成大面积磁流变硬化区,从而实现超光滑表面的高效磁流变平整加工。为进一步提高加工效率,采用有限元分析法结合正交法对永磁轭励磁装置进行优化;为评估优化效果,利用优化前后的永磁轭励磁装置进行加工试验,对优化前后永磁轭的外部磁场强度、永磁轭的性能、磁流变硬化区、抛光痕面积及加工效果进行测试并分析比较。试验结果表明,优化后的永磁轭磁感应强度增强,梯度磁场宽度增加,形成的磁流变硬化区变宽,抛光面积和体积去除率增大,有效提高磁流变平整加工效率。

关键词: 磁流变平整加工, 高效去除, 永磁轭, 优化

Abstract: A permanent magnetic yoke with a straight air gap is proposed to form a stiffened magnetorheological polishing tool of large area for magnetorheological planarization of ultra-smooth surface. A finite element analysis is conducted to optimize the permanent magnetic yoke, combining an orthogonal method, thus to further improve the efficiency of the magnetorheological polishing process. To examine the effectiveness of the optimization,magnetorheological planarization experiment is carried out using permanent magnetic yokes prior to and after optimization. The external magnetic flux density of the permanent magnetic yoke is measured. The performances of magnetic field,the stiffened magnetorheological fluid and the polishing areas are compared. Final tests are performed on optical glasses to evaluate the polishing performances of the modified yoke. The results show that the magnetic flux density and the area of the gradient magnetic field above the permanent magnetic yoke are increased through the optimization. Therefore, the stiffened magnetorheological polishing tool is expanded. The polishing area and the volumetric removal rate are enhanced. The efficiency of the magnetorheological planarization process is well improved.

Key words: high efficiency removal, magnetorheological planarization, optimization, permanent magnetic yoke

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