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Improvements of the experimental apparatus for measurement of the surface tension of supercooled liquids using horizontal capillary tube

机译:使用水平毛细管测量过冷液体表面张力的实验装置的改进

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摘要

An experimental apparatus with a horizontal capillary tube for measurement of the surface tension of supercooled liquids, i.e. liquids in a metastable state below the equilibrium freezing point, was designed and tested in the previous study [V. Vinš et al., EPJ Web Conf. 92, 02108 (2015)]. In this work, recent modifications of both the experimental setup and the measurement analysis are described. The main aim is to improve the accuracy and the reproducibility of measured surface tension and to achieve higher degrees of supercooling. Temperature probes measuring the temperature of cooling medium near the horizontal capillary tube were calibrated in the relevant temperature range from – 31 °C to + 45 °C. An additional pressure transducer was installed in the helium distribution setup at the position close to the capillary tube. The optical setup observing the liquid meniscus at the open end of the horizontal capillary tube together with the video analysis were thoroughly revised. The red laser illuminating the liquid meniscus, used at the original apparatus, was replaced by a fiber optic light source, which significantly improved the quality of the meniscus image. The modified apparatus was used for the measurement of surface tension of supercooled water at temperatures down to – 11 °C. The new data have a lower scatter compared to the previous horizontal measurements and show a good agreement with the other data obtained with a different measurement technique based on the modified capillary rise method.
机译:有用于过冷液体,即液体在平衡低于冰点的亚稳态的表面张力的测量水平的毛细管的实验装置,设计并在先前的研究中测试[V. VINS等,EPJ网络CONF。 92,02108(2015)]。在这项工作中,最近的实验装置和测量分析两者的变形例进行说明。的主要目的是提高精度和测量的表面张力的再现性,并实现更高程度的过冷。温度探针测量的冷却水平毛细管靠近介质的温度在相关的温度范围内进行校准,从 - 31℃至+ 45℃。一个额外的压力换能器被安装在在该位置靠近毛细管的氦分配设定。光学装置观察在与视频分析水平毛细管在一起的开口端的液体的弯月面被彻底修改。红色激光照射液体弯月,在原来的装置中使用,通过一个光纤光源,其显著提高了弯液面的图像的质量取代。修改后的装置被用于在温度的过冷水的表面张力的测量下至 - 11℃。相比之前的水平测量的新数据具有较低的散射和显示与基于经修改的毛细管上升法不同的测量技术得到的其他数据具有良好的一致性。

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