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Large-scale Generation of Patterned Bubble Arrays on Printed Bi-functional Boiling Surfaces

机译:在印刷双功能沸腾表面上大规模生成图案化气泡阵列

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摘要

Bubble nucleation control, growth and departure dynamics is important in understanding boiling phenomena and enhancing nucleate boiling heat transfer performance. We report a novel bi-functional heterogeneous surface structure that is capable of tuning bubble nucleation, growth and departure dynamics. For the fabrication of the surface, hydrophobic polymer dot arrays are first printed on a substrate, followed by hydrophilic ZnO nanostructure deposition via microreactor-assisted nanomaterial deposition (MAND) processing. Wettability contrast between the hydrophobic polymer dot arrays and aqueous ZnO solution allows for the fabrication of heterogeneous surfaces with distinct wettability regions. Heterogeneous surfaces with various configurations were fabricated and their bubble dynamics were examined at elevated heat flux, revealing various nucleate boiling phenomena. In particular, aligned and patterned bubbles with a tunable departure frequency and diameter were demonstrated in a boiling experiment for the first time. Taking advantage of our fabrication method, a 6 inch wafer size heterogeneous surface was prepared. Pool boiling experiments were also performed to demonstrate a heat flux enhancement up to 3X at the same surface superheat using bi-functional surfaces, compared to a bare stainless steel surface.
机译:气泡成核的控制,生长和离开动力学对理解沸腾现象和增强成核沸腾传热性能非常重要。我们报告了一种新型的双功能异质表面结构,能够调整气泡成核,生长和离开动力学。对于表面的制造,首先将疏水性聚合物点阵列印刷在基板上,然后通过微反应器辅助的纳米材料沉积(MAND)工艺进行亲水性ZnO纳米结构沉积。疏水性聚合物点阵列和ZnO水溶液之间的润湿性对比允许制造具有不同润湿性区域的异质表面。制备了具有各种构型的异质表面,并在提高的热通量下检查了它们的气泡动力学,揭示了各种形核沸腾现象。特别是,在沸腾实验中首次展示了具有可调的离开频率和直径的对准和图案化的气泡。利用我们的制造方法,制备了6英寸晶圆尺寸的异质表面。还进行了池沸腾实验,以证明与使用裸露不锈钢表面相比,使用双功能表面在相同表面过热下的热通量提高了3倍。

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