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Icing temperature measurements of water on pyroelectric single crystals: Impact of experimental methods on the degree of supercooling

机译:水在热电单晶上的结冰温度测量:实验方法对过冷度的影响

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In our experiments, the icing temperature of small water volumes placed on different pyroelectric single crystals (SrxBa1-xNb2O6, LiNbO3, and LiTaO3) was determined using two measurement setups: (1) the sessile droplet and (2) ring system method. In the first method, a free-standing water droplet was exposed to several external factors in the air environment. This was found to lead to higher icing temperatures compared to the second method where the water was more isolated from external factors such as evaporation. In the second method, the material of the ring system was found to be an important factor determining the freezing temperature of the enclosed water. A recommendation for the application of both methods is given, their advantages and disadvantages depending on the purpose of measurement, and their reproducibility for practical applications. In addition to this, the correlation between pyroelectricity and icing temperature, with regard to several types of internal and external factors affecting water freezing, is also discussed in the paper.
机译:在我们的实验中,使用两种测量设置确定了放置在不同热释电单晶(SrxBa1-xNb2O6,LiNbO3和LiTaO3)上的小体积水的结冰温度:(1)无柄液滴和(2)环系统方法。在第一种方法中,独立式水滴在空气环境中暴露于多种外部因素。与第二种方法相比,这会导致更高的结冰温度,在第二种方法中,水与外界因素(例如蒸发)的隔离程度更高。在第二种方法中,发现环形系统的材料是决定封闭水的冻结温度的重要因素。给出了两种方法的应用建议,它们的优缺点取决于测量的目的,以及它们在实际应用中的可重复性。除此之外,本文还讨论了热电和结冰温度之间的相关性,涉及影响水冻结的几种内部和外部因素。

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