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An optimized design of a scanning confocal probe

机译:扫描共聚焦探针的优化设计

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摘要

Basing on the principle of dynamic active confocal measuring method, a non-contact probe was introduced. The relation between the displacement of the object measured and the displacement of the oscillating unit was established by applying to the measure principle. To find the effect way to improve the output signal, a mathematical modal of the photoelectric signal was proposed. According to the mathematical modal, the diameter of the pinhole was decided and the optical path was adjusted, which improved the performance of the probe. It valuable to emphasize that the double lens oscillating unit was the crucial parts of the mechanical and optical structure. The tuning fork stimulating, inductive coils and the pinhole and photodiode adjuster device were designed according to the theoretical analysis, which were more convenient to the measure task. The stability of the oscillating unit was tested; and the optical and mechanical performance of the probe was validated by experiments using gage blocks combining with a micro-motion measuring mount model. The cost of a micro-displacement testing sensor was saved in designing of this kind of probe. A more accurate signal processing method was discussed in this paper.
机译:基于动态活性共聚焦测量方法的原理,引入了非接触式探针。通过施加测量原理来建立测量物体的位移与振荡单元的位移之间的关系。为了找到提高输出信号的效果方法,提出了光电信号的数学模态。根据数学模态,确定针孔的直径,并调节光路,改善了探针的性能。强调双透镜振荡单元是机械和光学结构的关键部件有价值。调整叉刺激,电感线圈和针孔和光电二极管调节装置是根据理论分析设计的,这对测量任务更方便。测试振荡单元的稳定性;并且通过使用与微观运动测量型型模型组合的Gage块的实验验证了探针的光学和机械性能。微型位移测试传感器的成本在设计这种探针时保存。本文讨论了一种更准确的信号处理方法。

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