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成型后的硫族化物玻璃GeSeAs透镜成型过程中的表面缺陷分析。

Surface defect analysis on formed chalcogenide glass GeSeAs lenses after the molding process.

作者信息

Zhou Tianfeng, Zhou Qin, Xie Jiaqing, Liu Xiaohua, Wang Xibin, Ruan Haihui

出版信息

Appl Opt. 2017 Oct 20;56(30):8394-8402. doi: 10.1364/AO.56.008394.

Abstract

Chalcogenide glass (ChG) is increasingly used in infrared optical systems owing to its excellent infrared optical properties and scalable production using precision glass molding (PGM). However, surface scratches affected by the molding temperature and microdimples on the lens surface caused by gas release seriously impair the quality of the formed lens. To reduce these surface defects when molding GeSeAs ChG, the temperature effect must be studied, and the gas generation must be minimized, while the gas escape must be maximized. In this work, we studied the effect of temperature on the surface defects. Additionally, we studied the influences of the roughness and curvature of the contact surfaces, as well as the pressing force on the formation of the microdimples. It was found that the molding temperature should be approximately 30°C higher than the softening temperature (T) to avoid surface scratches. The gas generation could be inhibited by increasing the pressing force and decreasing the roughness of the mold surface, and finally, increasing the curvature difference between the mold and glass preform surfaces improved the gas escape.

摘要

硫系玻璃(ChG)因其优异的红外光学性能以及可通过精密玻璃模压(PGM)进行规模化生产,而越来越多地应用于红外光学系统中。然而,成型温度影响的表面划痕以及气体释放导致的透镜表面微凹坑严重损害了成型透镜的质量。为了在模压锗硒砷硫系玻璃时减少这些表面缺陷,必须研究温度效应,将气体产生量降至最低,同时使气体逸出量最大化。在这项工作中,我们研究了温度对表面缺陷的影响。此外,我们还研究了接触面的粗糙度和曲率以及压力对微凹坑形成的影响。研究发现,成型温度应比软化温度(T)高约30°C,以避免表面划痕。通过增加压力和降低模具表面粗糙度可以抑制气体产生,最后,增大模具与玻璃预制件表面之间的曲率差可改善气体逸出。

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