张艺, 尹自强, 尹国举. 铝合金表面的直接光学抛光实验[J]. 应用光学, 2014, 35(4): 675-680.
引用本文: 张艺, 尹自强, 尹国举. 铝合金表面的直接光学抛光实验[J]. 应用光学, 2014, 35(4): 675-680.
Zhang Yi, Yin Zi-qiang, Yin Guo-ju. Direct optical polishing research on surface of aluminum alloy[J]. Journal of Applied Optics, 2014, 35(4): 675-680.
Citation: Zhang Yi, Yin Zi-qiang, Yin Guo-ju. Direct optical polishing research on surface of aluminum alloy[J]. Journal of Applied Optics, 2014, 35(4): 675-680.

铝合金表面的直接光学抛光实验

Direct optical polishing research on surface of aluminum alloy

  • 摘要: 单点金刚石车削铝合金表面具有较好的表面质量和精度,但车削纹路会产生散射现象,难以满足高品质光学系统要求。对铝合金表面进行直接光学抛光可以去掉表面产生的车削纹路,提高反射表面的光学性能,分析酸性条件下和碱性条件下的铝镜抛光原理,采用新型抛光盘与抛光液对单点金刚石车削后铝合金表面进行抛光实验。实验结果表明:通过合理控制工艺参数,能够消除铝合金表面残留的周期性车削刀纹,并且不会产生新的表面划痕,得到较好的铝镜光学表面质量,测得的铝镜表面粗糙度Ra=2.6 nm。

     

    Abstract: Single point diamond turning can make the surface of the aluminum alloy have good quality and precision, but the left turning grains cause scattering phenomenon that affects the optical effect which hardly meets the requirement of high quality optical system. Direct optical polishing on the surface of the aluminum alloy can remove the turning grains which are caused on the surface and can improve the optical performance of reflecting surface. This experiment adopted the new polishing disk and polishing solution to conduct the polishing test over the surface of the aluminum alloy by single point diamond turning. The result shows that we can remove the periodic turning blade lines remained on the surface of the aluminum alloy through reasonable control of the technological parameter, and by which there is no new superficial scratch, so that we can get better optical superficial quality of the aluminum mirror. The roughness on the surface of the aluminum mirror is 2.6 nm.

     

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