用于精确表面轮廓测量的低成本高速光纤耦合干涉仪

IF 4.7 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-07-19 DOI:10.3390/photonics11070674
Sebastian Hagemeier, Yijian Zou, T. Pahl, Felix Rosenthal, Peter Lehmann
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引用次数: 0

摘要

激光干涉仪具有非接触和快速测量的特点,是表面轮廓测量中触觉式测针仪器的理想替代品。除了这些出色的特性外,购置成本在工业中也起着重要作用,这限制了光学轮廓仪的频繁使用,因为光学轮廓仪比触觉轮廓仪昂贵得多。我们展示了一种低成本激光测距干涉仪,其轴向重复性低于 1 nm,采集速率为每秒 38,000 个高度值。该传感器的性能在多个表面标准上得到了验证,横向扫描速度高达 160 毫米/秒。除了高扫描速度外,高采集率还能通过平均测量高度值提高测量精度。例如,重复测量的标准偏差(625 pm)可减小到 265 pm,但数据传输速率却有所降低。不过,传感器的概念为进一步提高数据传输速率和测量重复性提供了可能。
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Low-Cost High-Speed Fiber-Coupled Interferometer for Precise Surface Profilometry
Due to their contactless and fast measuring capabilities, laser interferometers represent an interesting alternative to tactile stylus instruments for surface profilometry. In addition to these outstanding attributes, acquisition costs play a major role in industry, limiting the frequent use of optical profilometers, which are significantly more expensive than tactile profilometers. We present a low-cost laser distance-measuring interferometer featuring axial repeatability below 1 nm at acquisition rates of 38,000 height values per second. The sensor’s performance is validated on several surface standards, achieving lateral scan velocities up to 160 mm/s. Further to high scan velocities, the high acquisition rate enables improved measurement accuracy by averaging measured height values. For example, the standard deviation of 625 pm for repeated measurements can be reduced to 265 pm at the expense of the data rate. However, the sensor concept provides the potential for further improvements in data rate and measurement repeatability.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
期刊介绍: ACS Applied Bio Materials is an interdisciplinary journal publishing original research covering all aspects of biomaterials and biointerfaces including and beyond the traditional biosensing, biomedical and therapeutic applications. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrates knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important bio applications. The journal is specifically interested in work that addresses the relationship between structure and function and assesses the stability and degradation of materials under relevant environmental and biological conditions.
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