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Solidification contact angles of molten droplets deposited on solid surfaces

机译:沉积在固体表面上的熔滴的凝固接触角

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摘要

Droplet impact and equilibrium contact angle have been extensively studied. However, solidification contact angle, which is the final contact angle formed by molten droplets impacting on cold surfaces, has never been a study focus. The formation of this type of contact angle was investigated by experimentally studying the deposition of micro-size droplets (similar to 39 mu m in diameter) of molten wax ink on cold solid surfaces. Scanning Electron Microscope (SEM) was used to visualize dots formed by droplets impacted under various impact conditions, and parameters varied included droplet initial temperature, substrate temperature, flight distance of droplet, and type of substrate surface. It was found that the solidification contact angle was not single-valued for given droplet and substrate materials and substrate temperature, but was strongly dependent on the impact history of droplet. The angle decreased with increasing substrate and droplet temperatures. Smaller angles were formed on the surface with high wettability, and this wetting effect increased with increasing substrate temperature. Applying oil lubricant to solid surfaces could change solidification contact angle by affecting the local fluid dynamics near the contact line of spreading droplets. Assuming final shape as hemispheres did not give correct data of contact angles, since the final shape of deposited droplets significantly differs from a hemispherical shape.
机译:液滴冲击和平衡接触角已被广泛研究。然而,凝固接触角是熔融液滴冲击冷表面形成的最终接触角,从来没有成为研究的重点。这种类型的接触角的形成是通过实验研究冷熔固体表面上的微细液滴(直径约39微米)熔蜡油墨的沉积来研究的。扫描电子显微镜(SEM)用于可视化由在各种冲击条件下被冲击的液滴形成的点,并且变化的参数包括液滴的初始温度,基板温度,液滴的飞行距离以及基板表面的类型。发现对于给定的液滴和基底材料以及基底温度,凝固接触角不是单一值,而是强烈取决于液滴的冲击历史。角度随着基材和液滴温度的升高而减小。在具有高润湿性的表面上形成较小的角度,并且这种润湿效果随着基材温度的升高而增加。在固体表面上施加油润滑剂可能会影响散布的液滴接触线附近的局部流体动力学,从而改变凝固接触角。由于沉积的液滴的最终形状与半球形状明显不同,因此假定半球的最终形状不能提供正确的接触角数据。

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