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Finite element modeling of a high speed optical depth scanner

机译:高速光学深度扫描仪的有限元建模

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A rotational high-speed depth scanner for an optical low-coherence reflectometer used for 3-D retina scanning has been developed and analyzed. A rotational speed of 427'000 rpm (in the range between the 4~(th) and 5~(th) critical speed) has been reached for the 5x5x2 mm~3 BK7 glass cube, resulting in a record scan rate for this kind of instrument. This paper reports on our experimental results as well as the FE-modeling of the rotor and the internal-reflection glass cube under centrifugal stress, and on the interplay of mechanical deformation and optical performance. The scanner is mounted on air bearings and driven by an air turbine.
机译:已经开发并分析了用于3D视网膜扫描的光学低相干反射仪的旋转高速深度扫描仪。 5x5x2 mm〜3 BK7玻璃立方体的旋转速度达到427'000 rpm(在4〜(th)和5〜(th)临界速度之间的范围内),从而创下了此类记录的扫描速度的仪器。本文报道了我们的实验结果,以及转子和内反射玻璃立方体在离心应力下的有限元建模,以及机械变形和光学性能之间的相互作用。扫描仪安装在空气轴承上并由涡轮驱动。

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