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Experimental Investigation of Material Removal and Surface Roughness during Optical Glass Polishing

机译:光学玻璃抛光过程中材料去除和表面粗糙度的实验研究

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It has been a challenge to finish optical glass surfaces due to their hard and brittle nature. Moreover, tight tolerances of surface figure and finish make polishing a more critical operation. This work reports the results of an experimental study performed for full aperture polishing of BK7 optical glass. Flat samples of borosilicate (BK7) glass are polished using an optical pitch polisher and cerium oxide (CeO2) slurry. Taguchi's L9 orthogonal array is used for the design of experiments. Abrasive concentration, pressure and overarm speed are considered as variable process parameters. Polishing is performed for duration of 120 minutes for each combination of parameters. Material removal is measured using the precision weighing balance. Surface roughness was measured using a Form Talysurf PGI 120 profiler. Abrasive slurry concentration is observed to be one of the most significant parameters in the optical polishing process. It affects both the material removal rate (MRR) and the surface roughness. Pressure applied at the workpiece-polisher interface affects the MRR, but the variation of pressure is not found to affect the surface roughness significantly. Relative motion at the workpiece-polisher interface is also observed to be significant in defining the final polishing outputs.
机译:由于光学玻璃表面坚硬易碎,因此对光学玻璃表面进行精加工一直是一项挑战。此外,表面图形和表面处理的严格公差使抛光成为更关键的操作。这项工作报告了对BK7光学玻璃进行全孔径抛光的实验研究结果。使用光学沥青抛光机和氧化铈(CeO2)浆料对硼硅酸盐(BK7)玻璃的平样品进行抛光。 Taguchi的L9正交阵列用于实验设计。磨料浓度,压力和过臂速度被认为是可变的工艺参数。每种参数组合的抛光时间为120分钟。使用精密称重天平测量物料去除量。使用Form Talysurf PGI 120轮廓仪测量表面粗糙度。观察到研磨浆浓度是光学抛光过程中最重要的参数之一。它会影响材料去除率(MRR)和表面粗糙度。施加在工件抛光界面上的压力会影响MRR,但未发现压力变化会显着影响表面粗糙度。在定义最终的抛光输出时,也观察到了工件抛光界面的相对运动。

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