Polishing ultra-precision ground aspherical surfaces with MRF

被引:3
|
作者
Rumpel, Armin [1 ]
Ruppel, Thomas [1 ]
机构
[1] SwissOptic AG, Heinrich Wild Str, CH-9435 Heerbrugg, Switzerland
来源
OPTIFAB 2019 | 2019年 / 11175卷
关键词
ductile grinding; ultra-precision grinding; MRF; magneto rheological finishing; polishing; aspheres; TECHNOLOGY;
D O I
10.1117/12.2536759
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The production of high-precision aspheres typically involves at least one extensive chemo-mechanical polishing process to remove subsurface damage after grinding. Especially when machining glasses that are prone to fracture from grinding, subsurface damage can be substantial. As a result, subsequent polishing times are high and it is challenging to maintain a reasonably low surface form error. In order to reduce processing times and increase process stability SwissOptic established an ultra-precision grinding process. This process operates in a ductile grinding mode that not only minimizes subsurface damage but also leads to surfaces with form errors well below one micrometer. The high surface quality after grinding makes it possible to omit chemo-mechanical polishing processes. Instead, we polish and form correct the ultra-precision ground aspherical surfaces in a single process step by applying magnetorheological finishing (MRF). In this paper, we demonstrate the feasibility of this approach based on the production of a fused silica asphere and a steep S-PHM52 asphere. We utilize QEDs Q-Flex 300 for MRF polishing. Very aggressive process parameters are used to keep processing times as low as possible. We find that polishing and form correction to an irregularity below 300 nm is feasible in less than 30 minutes. Depending on the desired quality of the aspheres, MRF polishing parameters can be adjusted.
引用
收藏
页数:9
相关论文
共 50 条
  • [31] A study of measurement technology for ultra-precision freeform surfaces
    Li, H. F.
    Cheung, C. F.
    Kong, L. B.
    Lee, W. B.
    To, S.
    PROGRESS OF PRECISION ENGINEERING AND NANO TECHNOLOGY, 2007, 339 : 417 - +
  • [32] Study on the Electrorheological Ultra-Precision Polishing Process with an Annular Integrated Electrode
    Fan, Cheng
    Chen, Yigang
    Xue, Yucheng
    Zhang, Lei
    MICROMACHINES, 2021, 12 (10)
  • [33] Generation and characterization of ultra-precision compound freeform surfaces
    Kong, Lingbao
    Ma, Yingao
    Ren, Mingjun
    Xu, Min
    Cheung, Chifai
    SCIENCE PROGRESS, 2020, 103 (01)
  • [34] Nanoscale structures on ultra-precision machined fluorite surfaces
    Gritschneder, S
    Namba, Y
    Reichling, M
    NANOTECHNOLOGY, 2005, 16 (06) : 883 - 887
  • [35] Ultra-precision machining for micro structural functional surfaces
    Cai, Hongbin
    Shi, Guoquan
    2018 3RD INTERNATIONAL CONFERENCE ON MECHANICAL, CONTROL AND COMPUTER ENGINEERING (ICMCCE), 2018, : 277 - 280
  • [36] A minimax fitting algorithm for ultra-precision aspheric surfaces
    Zhang, Xiangchao
    Jiang, Xiangqian
    Scott, Paul J.
    13TH INTERNATIONAL CONFERENCE ON METROLOGY AND PROPERTIES OF ENGINEERING SURFACES, 2011, 311
  • [37] Characterisation of surface roughness for ultra-precision freeform surfaces
    Li, Huifen
    Cheung, C. F.
    Lee, W. B.
    To, S.
    Jiang, X. Q.
    7th International Symposium on Measurement Technology and Intelligent Instruments, 2005, 13 : 32 - 35
  • [38] Research Progress in Ultra-precision Polishing Techniques of Nickel and Its Alloys
    Han, Jiaru
    Jiang, Miaojin
    Chen, Yi
    Wei, Yaxiao
    Qiao, Dongsheng
    Xu, Ziyi
    Gong, Aijun
    Surface Technology, 2025, 54 (01): : 97 - 109
  • [39] Study on ultra-precision ball surface floating polishing kinematics mechanism
    Lv, Xun
    Yuan, Julong
    Wen, Donghui
    Deng, Qianfa
    Lou, Feiyan
    ADVANCES IN MATERIALS MANUFACTURING SCIENCE AND TECHNOLOGY II, 2006, 532-533 : 109 - +
  • [40] Ultra-Precision Shaping and Polishing Experiments in Nanoparticle Colloid Jet Machining
    Song, Xiaozong
    Zhang, Yong
    Zhang, Feihu
    MATERIALS PROCESSING TECHNOLOGY, PTS 1-4, 2011, 291-294 : 1759 - +