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Towards optimal designs for self-alignment in surface tension driven micro-assembly

机译:在表面张力驱动的微型组件中实现自对准的最佳设计

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Fluidic self-assembly driven by surface tension force has demonstrated the capability of assembling micro parts to binding sites in parallel with high efficiency and accuracy. In this paper, we focus on the binding site design for this technique, as it is a critical factor not only for accurate assembly, but also to achieve unique alignment position and orientation. To find optimal designs, we use a first-order approximation model to evaluate a series of patterns including disks, rings and offset rings. From this analysis, optimal patterns assuring unique alignment are determined to be offset rings with specific geometric constraints. For comparison, experiments with different shapes are performed, and results matching with the simulations are observed.
机译:由表面张力驱动的流体自组装已经证明了将微型零件组装到结合位点的能力,且效率高,精度高。在本文中,我们专注于此技术的结合位点设计,因为它不仅是精确组装的关键因素,而且对于获得唯一的对齐位置和方向也至关重要。为了找到最佳设计,我们使用一阶逼近模型来评估一系列模式,包括圆盘,环和偏置环。从该分析中,确保唯一对齐的最佳模式被确定为具有特定几何约束的偏置环。为了进行比较,进行了具有不同形状的实验,并观察了与模拟相匹配的结果。

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