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Transient contact angle of evaporating inkjet droplet on trans-parent polymer substrate

机译:蒸发喷墨液滴在透明聚合物基质上的瞬态接触角

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For advanced control and optimization of inkjet-printed droplet and line morphologies, this paper seeks to provide insights into characterizing and understanding the transient behavior of the inkjet droplet on different surface conditions and substrate temperatures. The transient behavior of contact angle of tested fluids includes deionised water and glycerol solution is discussed. Fluids with different viscosity and surface tension are deposited by inkjet on polymer substrate in three surface conditions: as-received, plasma treated and hydrophobic coated. The substrates are subjected to various thermal exposures (from room temperature up to 75°C) during the printing process. The induced convective flux within the droplet is dependent on the initial interaction of the droplet and substrate. The impact of the surface temperature to the drying of the droplet is examined. “Stick-slip”, a phenomenon of the contact line of impinged droplet remain static for an interval of time and move abruptly toward the centre of the droplet, is observed on specific printing conditions and fluid properties. Video microscopy and digital image analysis techniques are applied to monitor and observe the evaporation of the droplets.
机译:为了对喷墨打印的墨滴和线条形态进行高级控制和优化,本文旨在提供洞察力,以表征和理解喷墨墨滴在不同的表面条件和基材温度下的瞬态行为。讨论了包括去离子水和甘油溶液在内的被测流体接触角的瞬态行为。在以下三种表面条件下,通过喷墨将具有不同粘度和表面张力的流体沉积在聚合物基材上:原样,等离子体处理和疏水涂层。在印刷过程中,基材要经受各种热暴露(从室温到75°C)。液滴内引起的对流通量取决于液滴与基底的初始相互作用。检查表面温度对液滴干燥的影响。在特定的印刷条件和流体特性下,观察到“滴滑”现象,即被撞击的液滴接触线在一段时间内保持静止并突然向液滴中心移动。视频显微镜和数字图像分析技术被应用于监视和观察液滴的蒸发。

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