Experimental investigation of liquid metal droplet flow affected by a time-dependent magnetic field

IF 0.8 4区 工程技术 Q4 INSTRUMENTS & INSTRUMENTATION Tm-Technisches Messen Pub Date : 2023-05-03 DOI:10.1515/teme-2023-0046
C. Karcher, Z. Lyu
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Abstract

Abstract The present study investigates experimentally the effects of a time-dependent and spatially inhomogeneous magnetic field on liquid metal droplet flow down an inclined substrate. The flow is solely excited by the electromagnetic interactions between the electrically conducting melt and the applied magnetic field. The metal droplet consists of the eutectic alloy GaInSn which is liquid at room temperature. The magnetic field is generated in the gap between two metallic disks that are equipped with a special geometric arrangement of permanent magnets and put into a measured rotation. During the experiments, a droplet of a measured volume is positioned on an electrically non-conducting substrate that is slightly inclined against the horizontal direction. Droplet and substrate are placed in between the two rotating magnetic disks. In our experiments, we record the electromagnetically excited flow of the droplet downwards onto the substrate using a high-speed camera system. Applying standard techniques of digital image processing, we measure both the displacement position and velocity of the droplet as a function of time. We observe that, depending on the rotation rate of the disks and angle of inclination, the magnetic field eventually triggers this spreading process. In more detail, by evaluating the recorded data, we find that the magnetic field excites capillary waves at the free surface of the droplet. These surface waves contribute to a redistribution of volume towards the contact line formed at the downward-facing end tip of the droplet. This mode of transport steepens the contact angle, allowing the droplet to move. Besides the fundamental aspect of this work, the present study may contribute to the electromagnetic control of both the production of metallic microfibers and metallurgic coating processes as well as to the non-contact electromagnetic flow measurement technique of Lorentz force velocimetry applied to liquid metal free-surface flows.
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随时磁场作用下金属液滴流动的实验研究
实验研究了时空非均匀磁场对金属液滴沿倾斜基底向下流动的影响。流动完全由导电熔体和外加磁场之间的电磁相互作用激发。金属液滴由共晶合金GaInSn组成,在室温下呈液态。磁场是在两个金属圆盘之间的间隙中产生的,这两个金属圆盘配备了特殊的几何排列的永磁体,并进行了测量旋转。在实验过程中,测量体积的液滴被放置在与水平方向稍微倾斜的不导电基板上。液滴和基板放置在两个旋转磁盘之间。在我们的实验中,我们使用高速摄像系统记录了电磁激发液滴向下流到基片上的过程。应用标准的数字图像处理技术,我们测量了液滴的位移、位置和速度作为时间的函数。我们观察到,根据圆盘的旋转速率和倾角,磁场最终触发了这个扩散过程。更详细地说,通过评估记录的数据,我们发现磁场在液滴的自由表面激发毛细波。这些表面波有助于将体积重新分配到液滴向下端头形成的接触线上。这种传输方式使接触角变陡,使液滴能够移动。除了这项工作的基础方面,本研究可能有助于金属微纤维生产和冶金涂层过程的电磁控制,以及应用于液态金属自由表面流动的非接触式洛伦兹力测速技术的电磁流量测量技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Tm-Technisches Messen
Tm-Technisches Messen 工程技术-仪器仪表
CiteScore
1.70
自引率
20.00%
发文量
105
审稿时长
6-12 weeks
期刊介绍: The journal promotes dialogue between the developers of application-oriented sensors, measurement systems, and measurement methods and the manufacturers and measurement technologists who use them. Topics The manufacture and characteristics of new sensors for measurement technology in the industrial sector New measurement methods Hardware and software based processing and analysis of measurement signals to obtain measurement values The outcomes of employing new measurement systems and methods.
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