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Short timescale wetting and penetration on porous sheets measured with ultrasound, direct absorption and contact angle

机译:用超声波,直接吸收和接触角测量的多孔片材的短时间润湿和渗透

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In this study the short timescale penetration and spreading of liquids on porous sheets is investigated. Three measurement techniques are evaluated: ultrasonic liquid penetration measurement (ULP), contact angle measurement (CA) and scanning absorptiometry (SA). With each of these techniques liquid penetration as well as surface wetting can be measured. A quantitative comparison between the methods is carried out. For our studies we are using model liquids with tuneable surface tension, viscosity and surface energy which are the governing parameters for pore flow according to the Lucas-Washburn equation. Scanning absorptiometry turns out to be an adequate tool for direct measurement for liquid penetration. Ultrasonic liquid penetration showed a stable correlation (R-2 = 0.70) to SA and thus also gives a suitable indication on the liquid penetration behaviour. Absorption of individual microliter drops measured in the CA instrument showed different results than the other two measurements. For characterisation of the wetting behaviour the measurement techniques gave substantially different results. We thus conclude that ULP and SA do not capture the wetting behaviour of liquids on paper in the same way as conventional contact angle measurement, it is unclear if their results are meaningful. Finally we are proposing two parameters indicating a combination of liquid penetration and wetting, the slope of the contact angle over time d/dt and a contact angle calculated from SA. These two parameters are moderately correlated, supporting the idea that they are indeed capturing a combination of liquid penetration and wetting. While our investigations are restricted to paper, we believe that the methods investigated here are generally applicable to study liquid absorption in thin porous media like microfluidic paper based analytical devices, thin porous storage media, membranes and the like. Our findings are highlighting the importance to have a match in timescale (time for penetration and wetting) and size scale (liquid amount supplied) between the testing method and the actual use case of the material, when analyzing wetting and penetration on porous materials.
机译:在这项研究中,研究了短时间的渗透和液体在多孔片上的散布。评估三种测量技术:超声波液体渗透测量(ULP),接触角测量(CA)和扫描吸收术(SA)。通过这些技术中的每一个,可以测量液体穿透以及表面润湿。执行方法之间的定量比较。对于我们的研究,我们使用具有可调表面张力,粘度和表面能的模型液体,这是根据Lucas-Washburn方程的孔隙流量的控制参数。扫描吸收计是一种适当的工具,用于直接测量液体穿透。超声液体渗透显示稳定的相关性(R-2 = 0.70)至SA,因此还给出了液体穿透行为的合适指示。在CA仪器中测量的单个微透镜下降的吸收显示出与其他两次测量的不同结果。对于润湿行为的表征,测量技术产生了基本不同的结果。因此,我们得出结论,ULP和SA不会以与常规接触角测量相同的方式捕获液体上液体的润湿行为,如果它们的结果是有意义的,则目前尚不清楚。最后,我们提出了两种参数,该参数表示液体穿透和润湿的组合,接触角度随时间的斜率d / dt和由sa计算的接触角。这两个参数适度相关,支持它们确实捕获液体穿透和润湿的组合。虽然我们的调查仅限于纸张,但我们认为这里研究的方法通常适用于在基于微流体纸的分析装置,薄多孔储存介质,膜等的薄多孔介质中研究液体吸收。我们的研究结果突出了在分析多孔材料上的润湿性和渗透时,在测试方法和材料的实际用例之间具有匹配的重要性(渗透和润湿时间)和尺寸比例(液体量)。

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  • 来源
    《RSC Advances 》 |2018年第23期| 共9页
  • 作者

    Krainer Sarah; Hirn Ulrich;

  • 作者单位

    Graz Univ Technol Inst Paper Pulp &

    Fiber Technol Inffeldgasse 23 A-8010 Graz Austria;

    Graz Univ Technol Inst Paper Pulp &

    Fiber Technol Inffeldgasse 23 A-8010 Graz Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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