Investigation on HF based etching of the polished K9 glasses and its application in the subsurface damage

Hairong Wang, Bike Zhang, Lihui Xiao, Quantao Sun, Guoying Yuan, Zhuangde Jiang
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引用次数: 2

Abstract

To characterize the subsurface mechanical damage (SSD) of the polished optics, the material remove rate of the polished K9 glasses based on HF acid etching was investigated. The etching of optics is assumed to be isotropic, a polished K9 sample with special designed pattern was tested to find out the constancy of etching rate versus time. As the etching rate was determined, the polished samples were progressively etched till the SSD disappeared visually. During etching, topographies of the surface revealed the evolution of the subsurface damages, and by recording and comparing topographies, we may get the distribution of the SSD at every depth. The thickness of etched material refers to the depth of SSD as the subsurface damages were totally exposed. Compared with the Magnetorheological finishing tamper polishing, this method of measuring SSD is low-cost and simple.
抛光K9玻璃的HF基蚀刻及其在亚表面损伤中的应用研究
为了表征抛光光学器件的亚表面机械损伤(SSD),研究了基于HF酸刻蚀的抛光K9玻璃的材料去除率。假设光学元件的蚀刻是各向同性的,对经过特殊设计图样的抛光K9样品进行了测试,找出了蚀刻速率随时间的常数。随着蚀刻速率的确定,抛光后的样品逐渐蚀刻,直到SSD从视觉上消失。在蚀刻过程中,表面形貌揭示了亚表面损伤的演变过程,通过记录和比较形貌,我们可以得到SSD在各个深度的分布情况。蚀刻材料的厚度指的是固态硬盘的深度,因为亚表面损伤被完全暴露出来。与磁流变抛光法相比,该方法具有成本低、操作简单等优点。
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