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使用扫描长波光学测试系统测量粗糙光学表面。1. 原理与实现

Measuring rough optical surfaces using scanning long-wave optical test system. 1. Principle and implementation.

作者信息

Su Tianquan, Wang Shanshan, Parks Robert E, Su Peng, Burge James H

出版信息

Appl Opt. 2013 Oct 10;52(29):7117-26. doi: 10.1364/AO.52.007117.

Abstract

Current metrology tools have limitations when measuring rough aspherical surfaces with 1-2 μm root mean square roughness; thus, the surface cannot be shaped accurately by grinding. To improve the accuracy of grinding, the scanning long-wave optical test system (SLOTS) has been developed to measure rough aspherical surfaces quickly and accurately with high spatial resolution and low cost. It is a long-wave infrared deflectometry device consisting of a heated metal ribbon and an uncooled thermal imaging camera. A slope repeatability of 13.6 μrad and a root-mean-square surface accuracy of 31 nm have been achieved in the measurements of two 4 inch spherical surfaces. The shape of a rough surface ground with 44 μm grits was also measured, and the result matches that from a laser tracker measurement. With further calibration, SLOTS promises to provide robust guidance through the grinding of aspherics.

摘要

当前的计量工具在测量均方根粗糙度为1-2μm的粗糙非球面时存在局限性;因此,无法通过研磨精确地对该表面进行成型。为提高研磨精度,已开发出扫描长波光学测试系统(SLOTS),以高空间分辨率和低成本快速、准确地测量粗糙非球面。它是一种长波红外偏折测量装置,由一条加热的金属带和一台非制冷热成像相机组成。在对两个4英寸球面的测量中,实现了13.6μrad的斜率重复性和31nm的均方根表面精度。还测量了用44μm粒度研磨的粗糙表面的形状,结果与激光跟踪仪测量结果相符。经过进一步校准,SLOTS有望在非球面研磨过程中提供可靠的指导。

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