Optics and Precision Engineering, Volume. 33, Issue 3, 402(2025)

Magnetorheological elastomer uniform polishing method for shell components

Bo XUE1,2, Lijun ZHU1,2, Xing SU1,2、*, Li CHEN1,2, Tao ZHOU1,2, Jianfei ZHANG1,2, Kuo HAI1,2、*, and Wen HUANG1,2
Author Affiliations
  • 1College of Mechanical and Electrical Engineering, Northeast Forestry University, Harbin50040, China
  • 2Sichuan Precision and Ultra-Precision Machining Engineering Technology Center, Chengdu61000,China
  • show less
    References(45)

    [1] ZHAO J B, WANG S, ZHANG C Y et al. Research status and challenges in the manufacturing of IR conformal optics[J]. Defence Technology, 40, 154-172(2024).

    [2] 马传震, 刘赫男, 陈明君. 半球谐振子关键性能及制造工艺研究新进展[J]. 机械工程学报, 60, 354-372(2024).

         MA CH ZH, LIU H N, CHEN M J et al. Research progress on key property and manufacturing technology of hemispherical resonator[J]. Journal of Mechanical Engineering, 60, 354-372(2024).

    [3] YE S ZH, WANG P, ZHANG H et al. Sub-aperture generating method for grinding hemispherical and hyper-hemispherical optical dome[J]. Journal of Applied Optics, 44, 1362-1370(2023).

         叶斯哲, 王朋, 张昊. 子孔径范成法铣磨半球及超半球光学整流罩[J]. 应用光学, 44, 1362-1370(2023).

    [4] CHEN M J, LIU H N, SU Y R et al. Design and fabrication of a novel magnetorheological finishing process for small concave surfaces using small ball-end permanent-magnet polishing head[J]. The International Journal of Advanced Manufacturing Technology, 83, 823-834(2016).

    [5] LI SH SH. Research on Uniformity and Effect Sim-ulation of Polishing for Multi Curvature Bend Pi-pe inner Wall[D](2023).

         李顺顺. 多曲率弯管内壁抛光均匀性与效果仿真研究[D](2023).

    [6] LIU H N. Research on Key Technologies of Ma-gnetorheological Finishing for Hemispherical Res-onators[D](2019).

         刘赫男. 半球谐振子磁流变抛光的关键技术研究[D](2019).

    [7] WANG W M, LI ZH, LI Q ZH. Simulation analysis of uniformity of optical sphere polishing motion trajectory[J]. Diamond & Abrasives Engineering, 43, 386-391(2023).

         王伟明, 李震, 李庆忠. 光学球罩抛光运动轨迹均匀性模拟分析[J]. 金刚石与磨料磨具工程, 43, 386-391(2023).

    [8] YAN SH Q. Research on the Mechanism of Ultr-aprecision Jet Polishing of Optical Glass[D](2022).

         闫升亲. 光学玻璃超精密射流抛光工艺机理研究[D](2022).

    [9] LIU M Q, WANG J H, HE H C et al. Performance of flexible CeO2 composite abrasive in force rheological polishing of fused silica glass[J]. Journal of Manufacturing Processes, 126, 175-184(2024).

    [10] CHEN Y Q, WU J W, YIN J R et al. Mecha-nism, influencing factors and application of she-ar thickening fluid[J]. Fine Petrochemical Industry, 41, 57-63(2024).

         陈宇祺, 武俊文, 殷俊荣. 剪切增稠流体机理、影响因素及其应用[J]. 精细石油化工, 41, 57-63(2024).

    [11] HU H, DAI Y F, GUAN C L et al. Deterministic manufacturing technologies for polycrystalline magnesium fluoride conformal domes[C], 7515-7520(2010).

    [12] CHEN M J, LIU H N, CHENG J et al. Model of the material removal function and an experimental study on a magnetorheological finishing process using a small ball-end permanent-magnet polishing head[J]. Applied Optics, 56, 5573(2017).

    [13] WANG ZH X. High Efficiency Magnetorheologicalpolishing of Inner Surface of Hemispherical Har-monic Oscillator[D](2019).

         汪忠喜. 半球谐振子内表面高效磁流变抛光[D](2019).

    [14] 王金虎, 袁巨龙, 吕冰海. 石英半球谐振子力流变抛光[J]. 飞控与探测, 4, 60-66, 4(2021).

         WANG J H, YUAN J L, LYU B H et al. Shear rheological polishing of quartz hemispheric resonator[J]. Flight Control & Detection, 4, 60-66, 4(2021).

    [15] YANG G X, PAN J B, WANG D M. A review on the magnetorheological materials and applications[J]. International Journal of Applied Electromagnetics and Mechanics, 75, 407-443(2024).

    [16] 李刚, 陈颀, 胡国良. 磁流变弹性体力学性能与磁流变效应研究进展[J]. 磁性材料及器件, 54, 98-107(2023).

         LI G, CHEN Q, HU G L et al. Research progress on mechanical properties and magnetorheological effects of magnetorheological elastomers[J]. Journal of Magnetic Materials and Devices, 54, 98-107(2023).

    [17] 龙浩天, 路家斌, 胡达. 磁流变弹性体制备及其在精密加工应用研究进展[J]. 金刚石与磨料磨具工程, 43, 218-232(2023).

         LONG H T, LU J B, HU D et al. Preparation of magnetorheological elastomers and their applications in precision machining: a review[J]. Diamond & Abrasives Engineering, 43, 218-232(2023).

    [18] WANG J, WAN Y J, SHI C Y. Rigidity controllable polishing tool based on magnetorheological effect[C], 8407-8412(2012).

    [19] 徐志强, 易理银, 张高峰. 磁流变弹性体砂轮抛光镍基高温合金GH4169表面完整性研究[J]. 宇航材料工艺, 50, 51-57(2020).

         XU ZH Q, YI L Y, ZHANG G F et al. Surface integrity of polishing nickel-based superalloys with magnetorheological elastomer grinding wheel[J]. Aerospace Materials & Technology, 50, 51-57(2020).

    [20] YI L Y. Experimental Study on Grinding of Nic-kel Based Superalloys and Polishing of Magneto-rheological Elastomers[D](2020).

         易理银. 镍基高温合金磨削及其磁流变弹性体抛光试验研究[D](2020).

    [21] CHEN Y C, HUANG W, ZHANG Y F et al. Novel high efficiency deterministic polishing method using magnetorheological elastomer[J]. Smart Materials and Structures, 29, 114008(2020).

    [22] GUO L, JI Y X, MA ZH et al. Study on the grinding and polishing application of abrasive particle-reinforced magnetorheological elastomer[J]. Journal of Xi’an Jiaotong University, 57, 143-152(2023).

         郭磊, 姬云霄, 马臻. 磨料颗粒增强磁流变弹性体的磨抛应用研究[J]. 西安交通大学学报, 57, 143-152(2023).

    [23] HE Z H, LI K L et al. Research on the influence of the material removal profile of a spherical polishing tool on the mid-spatial frequency errors of optical surfaces[J]. Micromachines, 15, 654(2024).

    [24] LU ZH K, GUO H R, WU Y B. Magnetic compound fluid polishing of concave optical glass with small curvature[J]. Opt. Precision Eng., 31, 1314-1324(2023).

         陆政凯, 郭会茹, 吴勇波. 小曲率凹面光学玻璃的磁性混合流体精密抛光[J]. 光学 精密工程, 31, 1314-1324(2023).

    [25] QU CH. Theoretical and Applied Research on Magnetic Force and Magnetic Stiffness of NdFeB Permanent Magnets[D](2022).

         瞿川. 钕铁硼永磁体磁力和磁刚度理论及应用研究[D](2022).

    [26] JIN M L, JIN M SH, SONG ZH J et al. Resear-ch on material removal model of elastic polishi-ng tools with centralized fluid supply[J]. Chinese Mechanical Engineering, 35, 1659-1666(2024).

         金明磊, 金明生, 宋正江. 中心供液弹性研抛工具的材料去除模型研究[J]. 中国机械工程, 35, 1659-1666(2024).

    [27] 刘青龙. 基于CCOS的抛光轨迹及材料去除优化研究[D](2022).

         LIU Q L. Research on Polishing Trajectory and Material Removal Optimization Based on CCOS[D](2022).

    Tools

    Get Citation

    Copy Citation Text

    Bo XUE, Lijun ZHU, Xing SU, Li CHEN, Tao ZHOU, Jianfei ZHANG, Kuo HAI, Wen HUANG. Magnetorheological elastomer uniform polishing method for shell components[J]. Optics and Precision Engineering, 2025, 33(3): 402

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category:

    Received: Nov. 23, 2024

    Accepted: --

    Published Online: Apr. 30, 2025

    The Author Email: Xing SU (suxinghit@126.com), Kuo HAI (haikuo_6s@126.com)

    DOI:10.37188/OPE.20253303.0402

    Topics