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首页> 外文期刊>Journal of Micromechanics and Microengineering >Tolerance analysis of a micro-optical detection system for on-line monitoring of lubricant oils
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Tolerance analysis of a micro-optical detection system for on-line monitoring of lubricant oils

机译:用于在线监测润滑油的微光学检测系统的公差分析

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摘要

We present a functional prototype of a micro-optical detection unit for both absorbance and laser-induced fluorescence analysis in fused silica capillaries. Absorbance detection allows concentration measurements ranging from 0.6 μm to 12 mM, whereas fluorescence detection enables concentration measurements from 6 pM up to 0.6 mM. We make use of non-sequential optical ray tracing simulations combined with statistical design methodology to perform a complete tolerance analysis for manufacturability and we demonstrate experimentally that the efficiency of the system is insensitive to reasonable misalignment and fabrication errors of its building blocks. The possibility of using standard fabrication techniques to prototype and replicate this miniaturized plastic detection system, as well as its wide measurement range make it a good candidate for applications where low-cost and portable systems are needed to measure small volumes of liquid samples with low-level concentrations. As an example we demonstrate the use of the system for the optical characterization and differentiation of nanoliter volumes of lubricant oils.
机译:我们提出了用于熔融石英毛细管中的吸光度和激光诱导的荧光分析的微光学检测单元的功能原型。吸光度检测可以进行0.6μm至12 mM的浓度测量,而荧光检测可以进行6 pM至0.6 mM的浓度测量。我们利用非顺序光线追踪模拟与统计设计方法相结合,对可制造性进行了完整的公差分析,并通过实验证明了该系统的效率对合理的未对准及其构件的制造误差不敏感。可以使用标准的制造技术对这种微型塑料检测系统进行原型设计和复制,其广泛的测量范围使其成为需要低成本和便携式系统来测量少量液体样品的应用的理想之选。水平浓度。作为示例,我们演示了该系统用于纳升体积的润滑油的光学表征和区分的用途。

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