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Measurement of dynamic surface tension for liquid metal by capillary jet method

机译:毛细管喷射法测量液态金属的动态表面张力

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Most liquid metals are easily oxidized, causing their surface tensions to vary over time. In this study, a novel method for measuring the dynamic surface tension of a liquid metal during oxidization is proposed. This method is based on the fact that the descent trajectory of a capillary jet ejected horizontally from a small orifice at slow speed depends on the surface tension as well as inertial and gravitational forces. We derive a theoretical model to predict the jet trajectory and determine the dynamic surface tension of the liquid metal by matching the predicted theoretical trajectory to the experimentally measured one. Actual measurements for Wood's alloy at various oxygen concentrations demonstrate that the surface tension decreases to an equilibrium value on a time scale of 10-11 ms at oxygen densities of less than 1.5%, whereas it increases on a time scale of 10-17 ms at greater oxygen densities. This method has the ability to measure dynamic surface tension on a time scale of 1.5-55 ms at an accuracy of +/- 1.5 ms, making it suitable for measuring the dynamic surface tension of liquid metal in an oxidation process. (C) 2016 Elsevier Inc. All rights reserved.
机译:大多数液态金属很容易被氧化,导致它们的表面张力随时间变化。在这项研究中,提出了一种测量液态金属在氧化过程中动态表面张力的新方法。该方法基于以下事实:从小孔以低速水平喷射的毛细管射流的下降轨迹取决于表面张力以及惯性力和重力。我们通过推导理论模型来预测射流轨迹,​​并通过将预测的理论轨迹与实验测量的轨迹相匹配来确定液态金属的动态表面张力。伍德合金在各种氧气浓度下的实际测量结果表明,在氧气密度小于1.5%的情况下,表面张力在10-11 ms的时间范围内降低至平衡值,而在10-5 ms的时间范围内,表面张力升高至平衡值。更高的氧气密度。该方法具有在1.5-55 ms的时间范围内以+/- 1.5 ms的精度测量动态表面张力的能力,使其适合于测量氧化过程中液态金属的动态表面张力。 (C)2016 Elsevier Inc.保留所有权利。

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