Song Ci, Zhang Wanli, Shi Feng, Lin Zhifan, Nie Xuqing
College of Intelligent Science and Technology, National University of Defense Technology, Changsha, 410073, China.
Hunan Key Laboratory of Ultra-Precision Machining Technology, Changsha, 410073, China.
Sci Rep. 2020 Feb 13;10(1):2579. doi: 10.1038/s41598-020-59484-4.
This paper presented a conformal smoothing theory, and smoothing capability evaluation was established on the proposed theory. According to pressure distribution model, processing parameters have been optimized and the CPP sample with a size of 340 × 340 mm was applied in conformal smoothing. The middle spatial frequency was effectively corrected with the total polishing time of 750 min, and energy was constringed 32.2 times (improved from 57.68 nm·mm to 1.79 nm·mm). Meanwhile, surface roughness RMS (root mean square) maintained at the same scale (changed from 265.4 nm to 265.2 nm). Parametric conformal smoothing was proven to be an effective method to control the middle spatial frequency error of CPPs.
本文提出了一种共形平滑理论,并基于该理论建立了平滑能力评估方法。根据压力分布模型,对加工参数进行了优化,并将尺寸为340×340mm的CPP样品应用于共形平滑处理。在总抛光时间为750分钟的情况下,有效校正了中间空间频率,能量压缩了32.2倍(从57.68nm·mm提高到1.79nm·mm)。同时,表面粗糙度均方根(RMS)保持在同一水平(从265.4nm变为265.2nm)。参数化共形平滑被证明是控制CPP中间空间频率误差的有效方法。