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Fabrication of hollow polymer microstructures using dielectric and capillary forces

机译:使用介电和毛细管力的中空聚合物微结构的制造

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摘要

Electric Field Assisted Capillarity is a novel one-step process suitable for the fabrication of hollow polymer microstructures. The process, demonstrated to work experimentally on a microscale using Polydimethylsiloxane (PDMS), makes use of both the electrohydrodynamics of polymers subject to an applied voltage and the capillary force on the polymers caused by a low contact angle on a heavily wetted surface. Results of two-dimensional numerical simulations of the process are discussed in this paper for the special case of production of microfluidic channels. The paper investigates the effects of altering key parameters including the contact angle with the top mask, the polymer thickness and air gap, the permittivity of the polymer, the applied voltage and geometrical variations on the final morphology of the microstructure. The results from these simulations demonstrate that the capillary force caused by the contact angle has the greatest effect on the final shape of the polymer microstructures.
机译:电场辅助毛细管是一种新颖的一步法,适用于制造中空聚合物微结构。该方法证明使用聚二甲基硅氧烷(PDMS)在微观上进行实验工作,使用聚合物的电液体动力学经受施加的电压和毛细管力在湿润的表面上的低接触角引起的聚合物上。本文讨论了该方法的二维数值模拟的结果,用于生产微流体通道的特殊情况。本文研究了改变与顶部掩模的接触角,聚合物厚度和气隙,聚合物的介电常数,聚合物的介电常数,施加的电压和几何变化的影响,对微观结构的最终形态。这些模拟的结果表明,由接触角引起的毛细力对聚合物微结构的最终形状具有最大的影响。

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