Application of flowing thermal lens to flow sensors for microchemical chips

Y. Kikutani, K. Morishima, M. Tokeshi, J. Yamaguchi, T. Fukuzawa, A. Hattori, Y. Yoshida, M. Kitaoka, T. Kitamori
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引用次数: 1

Abstract

A flowing thermal lens microflow velocimeter, in which a photothermally produced local refractive index change (a thermal lens) was used as a tracer, was developed for microchemical chips made of glass. A laser pulse was focused with a microlens on a liquid flow inside a microchannel, and a thermal lens was produced. The thermal lens drifted downstream and was detected using another beam. The velocity was calculated from the time required for the thermal lens to travel between the two points. The microflow velocimeters enabled non-contact measurement with only slight disturbance to the microfluid possible and were suitable for microchemical systems.
流动热透镜在微化学芯片流量传感器中的应用
研制了一种以光热产生的局部折射率变化(热透镜)为示踪剂的流动热透镜微流测速仪,用于玻璃微化学芯片。用微透镜将激光脉冲聚焦在微通道内的液体流动上,产生热透镜。热透镜顺流而下,由另一束光束检测。速度是根据热透镜在两点之间移动所需的时间计算出来的。微流测速仪实现了非接触式测量,对微流体的干扰很小,适用于微化学系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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