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On the successful encapsulation of water droplets into oil droplets

机译:关于将水滴的成功封装成油滴

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Compound water-in-oil microdroplets can serve as microreactors in chemical and biological analyses. The inkjet printing is a useful technique to generate compound microdroplets by droplet impact. To understand the underlying physics during the droplet impact, a combined experimental and numerical study is carried out. The effect of spreading condition, impact velocity, and oil viscosity are investigated. The balance of the tripe-line among the three interfaces dominates primarily the stable morphology of the compound droplet. Reducing oil viscosity can reduce the required impact velocity. High impact velocity is necessary to reduce the side-slipping of the water droplet.
机译:复合水油微型电流可用作化学和生物分析中的微反应器。喷墨印刷是通过液滴冲击产生复合微量滴电池的有用技术。为了了解液滴冲击期间的底层物理,进行了组合的实验和数值研究。研究了扩散条件,冲击速度和油粘度的影响。三个界面中的Trave-Line的平衡主要是复合液滴的稳定形态。降低油粘度可以减少所需的冲击速度。需要高冲击速度以减少水滴的侧滑动。

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