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首页> 外文期刊>Nuclear instruments and methods in physics research >Concept, design and capability analysis of the new Deflectometric Flatness Reference at PTB
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Concept, design and capability analysis of the new Deflectometric Flatness Reference at PTB

机译:PTB新型偏斜平整度参考的概念,设计和功能分析

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摘要

At PTB, a new setup for the highly accurate topography measurement of nearly flat optical surfaces is now under construction. The so-called Deflectometric Flatness Reference (DFR) is designed to measure in the direct deflectometric mode by applying an autocollimator and a scanning pentaprism, and in the difference deflectometric mode corresponding to the Extended Shear Angle Difference (ESAD) principle invented by PTB. With the new DFR instrument, horizontally as well as vertically orientated specimens with dimensions of up to 1 m and a mass of up to 120kg will be measurable. The design of the new instrument is supported by employing a comprehensive simulation environment developed for dimensional measuring machines. The mechanical and optical concept is illustrated together with the current design of the DFR setup. Results from the simulations are presented to derive requirements for tolerated mechanical stage deviations and alignment accuracies.
机译:在PTB,目前正在建设一种用于近乎平坦的光学表面的高精度形貌测量的新装置。所谓的挠度平整度基准(DFR)设计为通过应用自动准直仪和扫描五棱镜在直接挠度测量模式下进行测量,并以与PTB发明的扩展剪切角差(ESAD)原理相对应的差挠度测量模式进行测量。使用新的DFR仪器,可以测量水平方向和垂直方向的标本,尺寸最大为1 m,最大质量为120kg。通过为尺寸测量机开发的综合仿真环境,可以支持新仪器的设计。阐述了机械和光学概念以及DFR设置的当前设计。给出了仿真结果,以得出对容许的机械位移台偏差和对准精度的要求。

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