Ji Peng, Li Duo, Jin Yuan, Su Xing, Wang Bo
Opt Express. 2023 Nov 20;31(24):39465-39482. doi: 10.1364/OE.504613.
Nowadays, computer controlled optical surfacing (CCOS) is greatly developed in the fabrication of ultra-precision optical surfaces. As one of the deterministic CCOS techniques, atmospheric pressure plasma processing (APPP) can achieve the efficient removal based on the chemical reaction. In this process, the temperature rising issue caused by plasma heating is of great importance for accelerating the etching rate, but also increases the difficulty of deterministic removal control, because the tool influence function (TIF) in APPP is no longer time-invariant. In the existing research, the time-variant TIF model can describe the TIF changes to a certain degree, which is considered in the dwell time calculation. However, there inevitably exists the strong neighborhood effect, which indicates that the TIFs of different dwell points are thermally interacted. Thus, the existing time-variant TIF model is no longer accurate for predicting TIF changes, and not suitable for application to further compensation. To solve this, the compensation of TIF changes under neighborhood effect is proposed in this paper. First, the mechanism of TIF changes caused by neighborhood effect is explained in depth. Then, the theoretical analysis is implemented and the compensation method is systematically discussed, encompassing the tool path optimization, model of TIF changes and dwell time calculation. Further, the proposed method is demonstrated and verified by a series of simulations. Finally, the experimental validation is carried out, which proves the capability of achieving high-precision removal and high convergence rate.
如今,计算机控制光学表面成形(CCOS)技术在超精密光学表面制造中得到了极大的发展。作为确定性CCOS技术之一,大气压等离子体处理(APPP)能够基于化学反应实现高效去除。在此过程中,等离子体加热引起的温度上升问题对于提高蚀刻速率至关重要,但同时也增加了确定性去除控制的难度,因为APPP中的工具影响函数(TIF)不再是时不变的。在现有研究中,时变TIF模型能够在一定程度上描述TIF的变化,这在驻留时间计算中有所考虑。然而,不可避免地存在强烈的邻域效应,这表明不同驻留点的TIF之间存在热相互作用。因此,现有的时变TIF模型在预测TIF变化时不再准确,不适用于进一步的补偿应用。为了解决这一问题,本文提出了邻域效应下TIF变化的补偿方法。首先,深入解释了邻域效应引起TIF变化的机制。然后,进行了理论分析,并系统地讨论了补偿方法,包括刀具路径优化、TIF变化模型和驻留时间计算。此外,通过一系列仿真对所提方法进行了演示和验证。最后,进行了实验验证,证明了该方法具有实现高精度去除和高收敛速度的能力。