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Large scale generation of micro-droplet array by vapor condensation on mesh screen piece

机译:通过网状筛件蒸汽冷凝的大规模产生微液滴阵列

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We developed a novel micro-droplet array system, which is based on the distinct three dimensional mesh screen structure and sintering and oxidation induced thermal-fluid performance. Mesh screen was sintered on a copper substrate by bonding the two components. Non-uniform residue stress is generated along weft wires, with larger stress on weft wire top location than elsewhere. Oxidation of the sintered package forms micro pits with few nanograsses on weft wire top location, due to the stress corrosion mechanism. Nanograsses grow elsewhere to show hydrophobic behavior. Thus, surface-energy-gradient weft wires are formed. Cooling the structure in a wet air environment nucleates water droplets on weft wire top location, which is more “hydrophilic” than elsewhere. Droplet size is well controlled by substrate temperature, air humidity and cooling time. Because warp wires do not contact copper substrate and there is a larger conductive thermal resistance between warp wire and weft wire, warp wires contribute less to condensation but function as supporting structure. The surface energy analysis of drops along weft wires explains why droplet array can be generated on the mesh screen piece. Because the commercial material is used, the droplet system is cost effective and can be used for large scale utilization.
机译:我们开发了一种新型微液滴阵列系统,基于不同的三维网筛结构和烧结和氧化诱导的热流体性能。通过粘合两种组分,通过粘合网筛网在铜基材上烧结。沿纬线产生非均匀残留应力,在纬线顶部位置大的压力大于其他地方。由于应力腐蚀机构,烧结封装的氧化在纬线顶部位置上具有少量纳米草的微坑。纳米草在其他地方生长以显示疏水性行为。因此,形成表面能量梯度纬纱线。在湿空气环境中冷却结构成核在纬线顶部位置上的水滴,比其他地方更为“亲水”。液滴尺寸通过衬底温度,空气湿度和冷却时间良好控制。由于翘曲电线不接触铜基板,并且经线与纬线之间存在较大的导电热阻,因此经线电线延长缩小,但用作支撑结构。沿纬线的液滴的表面能分析解释了为什么可以在网状筛件上产生液滴阵列。由于使用了商业材料,因此液滴系统具有成本效益,可用于大规模利用率。

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