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SPECTRAL BOUNDARY ELEMENT METHOD FOR LIQUID BRIDGE DYNAMICS BETWEEN CAPILLARY AND SUBSTRATE

机译:毛细管与基体之间液桥动力学的谱边界元方法

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Micro/Nanolithography is an emerging technique to create microano features on substrate. New capillary based lithography method has been developed to overcome the limitations (e.g. directly contact of the substrate) of existing lithography techniques including dip-pen nanolithography, nano-imprint lithography, and electron-beam lithography. The understanding of the behavior of the liquid bridge formed between a capillary tube and a substrate is essential for the recently developed capillary based lithography method that is non-invasive to the substrate. A three-dimensional spectral boundary element method has been employed to describe the dynamics of liquid bridge. Starting with a steady-state liquid bridge shape, the transient bridge deformation is computed as the capillary tube is retracting away from the substrate. Several relations between the dynamic contact angle and contact line speed have been employed and discussed. The computational results are compared with experimental findings. The influences of liquid properties and retracting speed on the bridge dynamics are investigated.
机译:微米/纳米光刻技术是在基板上创建微米/纳米特征的新兴技术。已经开发出新的基于毛细管的光刻方法来克服现有光刻技术的局限性(例如,基板的直接接触),包括浸笔式纳米光刻,纳米压印光刻和电子束光刻。对于最近开发的对基底无创的基于毛细管的光刻方法,必须了解在毛细管和基底之间形成的液桥的行为。三维光谱边界元法已被用来描述液桥的动力学。从稳态的液桥形状开始,随着毛细管从基材缩回,将计算出瞬态桥变形。动态接触角和接触线速度之间的几种关系已被采用和讨论。将计算结果与实验结果进行比较。研究了液体特性和收缩速度对桥梁动力学的影响。

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