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Experimental Investigation on Form Error for Slow Tool Servo Diamond Turning of Micro Lens Arrays on the Roller Mold

机译:滚子模具微透镜阵列慢刀伺服金刚石车削形状误差的实验研究

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摘要

Slow tool servo (STS) assisted ultra-precision diamond turning is considered as a promising machining process with high accuracy and low cost to generate the large-area micro lens arrays (MLAs) on the roller mold. However, the chatter mark is obvious at the cut-in part of every machined micro lens along the cutting direction, which is a common problem for the generation of MLAs using STS. In this study, a novel forming approach based on STS is presented to fabricate MLAs on the aluminum alloy (6061) roller mold, which is a high-efficiency machining approach in comparison to a traditional method based on STS. Based on the different distribution patterns of the discrete point of micro lens, the equal-arc method and the equal-angle method are also proposed to generate the tool path. According to a kinematic analysis of the cutting axis, the chatter mark results from the overlarge instantaneous acceleration oscillations of the cutting axis during STS diamond turning process of MLAs. Cutting parameters including the number of discrete points and cutting time of every discrete point have been experimentally investigated to reduce the chatter mark. Finally, typical MLAs (20.52-μm height and 700-μm aperture) is successfully machined with the optimal cutting parameters. The results are acquired with a fine surface quality, i.e., form error of micro lenses is 0.632 μm, which validate the feasibility of the new machining method.
机译:慢刀伺服(STS)辅助的超精密金刚石车削被认为是一种有前途的加工工艺,具有高精度和低成本,可在辊模上产生大面积的微透镜阵列(MLA)。然而,在每个机械加工的微透镜的沿切入方向的切入部分处,the痕是明显的,这是使用STS生成MLA的普遍问题。在这项研究中,提出了一种基于STS的新颖成型方法,以在铝合金(6061)滚子模具上制造MLA,与基于STS的传统方法相比,这是一种高效的加工方法。针对微透镜离散点的不同分布方式,提出了等弧法和等角法生成刀具轨迹的方法。根据切削轴的运动学分析,颤振痕迹是由MLA的STS金刚石车削过程中切削轴的过大瞬时加速度振荡引起的。为了减少颤动痕迹,已经通过实验研究了包括离散点数和每个离散点的切削时间在内的切削参数。最后,成功地以最佳切削参数加工了典型的MLA(高度为20.52-μm,孔径为700-μm)。获得的结果具有良好的表面质量,即微透镜的形状误差为0.632μm,这证明了这种新加工方法的可行性。

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