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Laser-based investigation into injection, formation and flow processes of ethanol films on metal surface

机译:基于激光的金属表面乙醇膜注入,形成和流动过程的研究

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摘要

Dynamic liquid films exist widely in various industrial processes, and the investigations into these films with high temporal and spatial resolution are of great significances to understand the formation mechanisms and flow characteristics of liquid films, as well as to optimize relevant processes. Since ethanol is often used as a diluent for the film-forming substance in the coating process, it was chosen as research object here. In the work, the absorption spectrum of ethanol in the near-infrared region (6000?cm?1–8000?cm?1) was firstly analyzed. And liquid films on horizontal metal surface were investigated based on diode laser absorption spectroscopy (DLAS) by manual injection of ethanol with a needle (injection mode 1) and automatic injection of ethanol with a peristaltic pump (injection mode 2), respectively. Meanwhile, ultrasonic pulse-echo method (UPEM) was employed to verify the measurement accuracy of DLAS method. It revealed that the variations of liquid film thicknesses during the injection and formation processes obtained by these two methods were in good agreement. Furthermore, the formation and falling processes of ethanol films on vertical metal surface by injection mode 2 at different outlet flow rates were also investigated by DLAS method. It revealed that if the flow rates increased by 100?ml/min, the time increased by ~0.14?s on average for dynamic liquid film to get a steady state. And the film kept stable for 7.31/31.20/50.73/52.43?s at flow rates of 100/200/300/400?ml/min, and the corresponding film thickness was 246.3/243.5/202.7/200.1?μm, respectively.
机译:动态液膜广泛存在于各种工业过程中,对这些具有高时空分辨率的液膜进行研究对于理解液膜的形成机理和流动特性以及优化相关工艺具有重要意义。由于乙醇通常在涂布过程中用作成膜物质的稀释剂,因此在这里选择乙醇作为研究对象。在工作中,首先分析了近红外区域(6000?cm?1-8000?cm?1)中乙醇的吸收光谱。并基于二极管激光吸收光谱法(DLAS),分别通过使用针头手动注入乙醇(注入模式1)和通过蠕动泵自动注入乙醇(注入模式2)来研究水平金属表面上的液膜。同时,采用超声脉冲回波法(UPEM)验证了DLAS法的测量精度。结果表明,这两种方法在注入和形成过程中液膜厚度的变化吻合良好。此外,还通过DLAS方法研究了在不同出口流量下,注入模式2乙醇在垂直金属表面上的形成和下落过程。结果表明,如果流速增加100?ml / min,动态液膜达到稳定状态所需的时间平均增加约0.14?s。并且在100/200/300 /400μml/ min的流速下,膜在7.31 / 31.20 / 50.73 /52.43μs下保持稳定,相应的膜厚度分别为246.3 / 243.5 / 202.7 /200.1μm。

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