Bai Yang, Zhang Zhiyu, Xue Donglin, Zhang Xuejun
Appl Opt. 2018 Dec 1;57(34):F62-F67. doi: 10.1364/AO.57.000F62.
Metal mirrors are rarely used in visible or ultraviolet systems due to the ultra-precision fabrication difficulties. In this work, a plane aluminum alloy substrate (ϕ100 mm) surface deposited with a nickel-phosphorus (NiP) layer by the electroless deposition technique is prepared. The NiP layer is processed by single point diamond turning (SPDT) technology to the accuracy of 60 nm in RMS, and the surface roughness reaches 4.157 nm in Ra. A kind of water-based magnetorheological polishing fluid for the ultra-precision of the NiP layer is developed, and magnetorheological finishing (MRF) is applied to the final finishing of the mirror. The developed fluid that contains small size (1.5 μm) carbonyl iron powder (CIP) and 50 nm nano-cerium possesses material removal of 1.8 μm/min, and surface roughness of 1 nm is determined as the optimal fluid formula. The surface residual error is improved from 60 to 10 nm, and the surface roughness decreases from 4.157 to 0.851 nm after MRF in 1.5 h with one polishing cycle with the developed MR polishing fluid. Finally, the surface quality after MRF is tested by SEM and XRD, and the results manifest that the periodical tool mark is swiped out and the surface is not contaminated by MR polishing fluid. The experiment results and theoretical analysis of this work prove that MRF can satisfy the ultra-precision fabrication of NiP film on the metal mirror, and the surface quality can be applied in a visible or even ultraviolet optical system by using suitable MR polishing fluids.
由于超精密制造困难,金属镜很少用于可见光或紫外线系统。在这项工作中,制备了一个通过化学沉积技术在表面沉积有镍磷(NiP)层的平面铝合金基板(直径100毫米)。采用单点金刚石车削(SPDT)技术对NiP层进行加工,使其均方根误差达到60纳米,表面粗糙度Ra达到4.157纳米。研制了一种用于NiP层超精密加工的水基磁流变抛光液,并将磁流变光整加工(MRF)应用于该镜面的最终光整加工。所研制的抛光液含有小尺寸(1.5微米)的羰基铁粉(CIP)和50纳米的纳米铈,材料去除率为1.8微米/分钟,确定表面粗糙度为1纳米作为最佳抛光液配方。使用所研制的磁流变抛光液进行1.5小时的单循环磁流变光整加工后,表面残余误差从60纳米提高到10纳米,表面粗糙度从4.157纳米降低到0.851纳米。最后,通过扫描电子显微镜(SEM)和X射线衍射(XRD)对磁流变光整加工后的表面质量进行了测试,结果表明周期性刀痕被消除,表面未被磁流变抛光液污染。这项工作的实验结果和理论分析证明,磁流变光整加工能够满足金属镜上NiP薄膜的超精密制造,通过使用合适的磁流变抛光液,其表面质量可应用于可见光甚至紫外光学系统。