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Electrically induced drop detachment and ejection

机译:电诱导的液滴脱离和弹出

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摘要

A deformed droplet may leap from a solid substrate, impelled to detach through the conversion of surface energy into kinetic energy that arises as it relaxes to a sphere. Electrowetting provides a means of preparing a droplet on a substrate for lift-off. When a voltage is applied between a water droplet and a dielectric-coated electrode, the wettability of the substrate increases in a controlled way, leading to the spreading of the droplet. Once the voltage is released, the droplet recoils, due to a sudden excess in surface energy, and droplet detachment may follow. The process of drop detachment and lift-off, prevalent in both biology and micro-engineering, has to date been considered primarily in terms of qualitative scaling arguments for idealized superhydrophobic substrates. We here consider the eletrically-induced ejection of droplets from substrates of finite wettability and analyze the process quantitatively. We compare experiments to numerical simulations and analyze how the energy conversion efficiency is affected by the applied voltage and the intrinsic contact angle of the droplet on the substrate. Our results indicate that the finite wettability of the substrate significantly affects the detachment dynamics, and so provide new rationale for the previously reported large critical radius for drop ejection from micro-textured substrates.
机译:变形的液滴可能会从固体基材上跳下来,并通过将表面能转换为动能而脱离,从而将其释放到球体中。电润湿提供了一种在衬底上制备液滴以进行剥离的方法。当在水滴和涂覆电介质的电极之间施加电压时,基板的润湿性以受控的方式增加,导致水滴散布。释放电压后,由于表面能的突然过量,液滴会反冲,然后液滴会脱落。迄今为止,生物学和微工程学中普遍存在的液滴分离和剥离过程主要是针对理想化的超疏水性底物的定性定标参数。我们在这里考虑了从有限润湿性的基板上以电感应方式产生的液滴喷射,并对过程进行了定量分析。我们将实验与数值模拟进行比较,并分析能量转换效率如何受到施加的电压和液滴在基板上的固有接触角的影响。我们的结果表明,基底的有限润湿性会显着影响分离动力学,因此为先前报道的从微织构基底喷射液滴的大临界半径提供了新的理论依据。

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