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首页> 外文期刊>International Journal of Multiphase Flow >Galinstan liquid metal breakup and droplet formation in a shock-induced cross-flow
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Galinstan liquid metal breakup and droplet formation in a shock-induced cross-flow

机译:加入液体金属破碎和液滴形成在触发型横流

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摘要

Liquid metal breakup processes are important for understanding a variety of physical phenomena including metal powder formation, thermal spray coatings, fragmentation in explosive detonations and metalized propellant combustion. Since the breakup behaviors of liquid metals are not well studied, we experimentally investigate the roles of higher density and fast elastic surface oxide formation on breakup morphology and droplet characteristics. This work compares the column breakup of water with Galinstan, a room-temperature eutectic liquid metal alloy of gallium, indium and tin. A shock tube is used to generate a step change in convective velocity and back-lit imaging is used to classify morphologies for Weber numbers up to 250. Digital in-line holography (DIH) is then used to quantitatively capture droplet size, velocity and three-dimensional position information. Differences in geometry between canonical spherical drops and the liquid columns utilized in this paper are likely responsible for observations of earlier transition Weber numbers and uni-modal droplet volume distributions. Scaling laws indicate that Galinstan and water share similar droplet size-velocity trends and root-normal volume probability distributions. However, measurements indicate that Galinstan breakup occurs earlier in non-dimensional time and produces more non-spherical droplets due to fast oxide formation.
机译:液态金属破碎过程对于了解各种物理现象,包括金属粉末形成,热喷涂涂层,爆炸性爆炸和金属化推进剂燃烧的碎裂。由于液体金属的分解行为未得到很好的研究,我们实验研究了更高密度和快速弹性表面氧化物形成对破碎形态和液滴特性的作用。该工作比较了Galinstan的水柱分解,镓,铟和锡的室温共晶液金属合金。用于产生对流速度的步骤变化,反光成像的步骤变化用于对韦伯数的形态进行分类,最高可达250.数字在线全息术(DIH),以定量捕获液滴尺寸,速度和三个 - 统一位置信息。在本文中使用的典型球形滴和液柱之间的几何形状的差异可能是对早期过渡韦伯号和单模液液滴卷分布的观察的负责。缩放法则表明加利班和水分股份类似的液滴尺寸 - 速度趋势和根正常体积概率分布。然而,测量表明,由于快速氧化物形成,在非尺寸时间之前发生加仑斯坦分类并产生更多的非球形液滴。

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