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FEM-based Simulation of Fixing Mode of High Precision Lightweight Reflection Mirror

机译:高精度轻质反射镜固定模式的基于FEM模拟

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In order to satisfy the demand of measuring precision of the light beam-guided sensor used in a specific high precision measuring device with machine vision, as the main error sources are known from the positioning precision of the lightweight reflection mirror, the mathematic and physic modeling is made by the basic theory of finite element method (FEM), and four kinds of positioning and fixing ways of the mirror are simulated by the finite element analysis software of I-DEAS. The four ways of fixing, i.e. (1) fixing at three points uniformly distributed at the edge of top surface; (2) fixing at four points uniformly distributed at the edge of top surface; (3) fixing at three point uniformly distributed at side surface and (4) fixing at four points uniformly distributed at side surface. The simulation results indicate that the fixing at three points uniformly distributed at the edge of top surface is the best way, and by the way the radial drifts of the light spot at CCD imaging plane is little than 1.81 μm.
机译:为了满足具有机器视觉的特定高精度测量装置中使用的光束引导传感器的测量精度的需求,因为从轻量级反射镜的定位精度,数学和物理建模中已知主要误差源由有限元方法(FEM)的基本理论进行,并且通过I-DEA的有限元分析软件模拟镜子的四种定位和固定方法。固定的四种方式,即(1)固定在顶表面边缘均匀分布的三个点; (2)在均匀分布在顶表面边缘的四个点处固定; (3)在侧面分布的三点固定在侧面和(4)固定在侧面均匀分布的四个点。仿真结果表明,在顶面边缘均匀分布的三个点处的固定是最好的方法,并且通过CCD成像平面下光点的径向漂移的方式小于1.81μm。

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