Effects of Crystal Orientation in Deterministic Microgrinding of Sapphire

D. Golini, J. Lambropoulos, T. Fang, Maynard B. Smith
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引用次数: 1

Abstract

A new high precision optical manufacturing process for nearly hemispherical sapphire missile domes has been established at the Center for Optics Manufacturing. During development of this process, an interesting lobing phenomenon was observed, and is the subject of this paper. The substrate material used for the guided missile domes was Crystal System’s highest quality HEMEX grade sapphire. The dome was cut normal to the c (0001) orientation. When cutting a steep spherical surface in sapphire, normal to the c plane, the machining process is influenced by the change in material properties as other crystal orientations are intersected (Figure 1). The work described here is intended to explain the reason for the lobing effect through a combination of activities including: machining of sapphire domes; loose abrasive lapping of various crystal orientations of sapphire; and microhardness testing of various crystal orientations of sapphire.
晶体取向对蓝宝石确定性微磨削的影响
在光学制造中心建立了一种高精度的近半球形蓝宝石导弹圆顶光学制造新工艺。在这一过程的发展过程中,观察到一个有趣的分叶现象,这是本文的主题。用于导弹圆顶的衬底材料是Crystal System公司最高质量的HEMEX级蓝宝石。圆顶按c(0001)方向垂直切割。当切割与c平面垂直的蓝宝石陡峭球面时,由于其他晶体取向相交,因此加工过程受到材料性能变化的影响(图1)。这里描述的工作旨在通过以下活动的组合来解释分叶效应的原因:蓝宝石圆顶的加工;蓝宝石各种晶体取向的松散研磨;以及蓝宝石不同晶向的显微硬度测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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