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Bioinspired Tip-Guidance Liquid Jetting and Droplet Emission at a Rotary Disk via a Surface Energy Gradient

机译:通过表面能梯度旋转盘处的Bioinspired Tip-Guidance液喷射和液滴发射

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摘要

Effective droplet emission is of fundamental importance for practical application, such as agricultural sprays to painting, atomization, emulsification, and catalytic action. Highly viscous liquids are commonly used, such as printing inks, which hinder the ejection at the nozzle. A big challenge faced by people is how to obtain stable and controllable liquid droplets in a wide range of viscosities. Inspired by the rotation shaking of droplets on fiber clusters and the rotary spraying disk technique, here, we demonstrate uniform microdroplet (1-2000 mPa.s) generation in a tip-guided way that replaces the commonly confined nozzle by a double-layer spinning "sandwich" multitip disk (SSMD). A surface energy gradient induced by the margin structure of the alternating gas wedge and solid tip guides liquid to move along the solid tip, which is ejected at the end of the tip, forming a ring of droplet clusters. SSMD improves the effective droplet-jet process to 7/10 of the whole drainage process and enhances the efficiency with a production drop volume of similar to 3.19 X 10(7) mu L/h and production droplet numbers of similar to 3.3 X 10(4) per second. Droplets can be fine-tuned between 0.1 and 1.0 mm via the tip structure, liquid property, and spinning angular velocity with a narrow size distribution. This facile tip-guided design could inspire the possibility of energy-efficient droplet production techniques in various fluid applications, such as spraying and printing. It may further improve other fluid systems that serve as a crucial component for high-speed droplet manipulation, liquid transport, and water vapor capturing.
机译:有效的液滴排放对实际应用的根本重要性,例如农业喷雾到涂漆,雾化,乳化和催化作用。通常使用高粘度液体,例如印刷油墨,其阻碍喷嘴处的喷射。人们面临的一个大挑战是如何在广泛的粘度下获得稳定和可控的液滴。灵感灵感来自液体簇上的液滴和旋转喷涂盘技术的旋转摇动,这里,我们以尖端引导方式展示了均匀的微滴(1-2000MPa.S)的产生,其通过双层纺纱取代了通常的狭窄的喷嘴“三明治”Multiitip盘(SSMD)。由交变气体楔的边缘结构和固体尖端引导液体引起的表面能梯度沿着固体尖端移动,该液体在尖端的末端喷射,形成一簇液滴簇。 SSMD将有效的液滴喷射过程改善到整个排水过程的7/10,并提高了类似于3.19×10(7)Mu L / H和类似于3.3×10的生产液滴数( 4)每秒。液滴可以通过尖端结构,液体性能和旋转角速度微调在0.1和1.0mm之间,尺寸分布窄。这种轻巧的尖端导向设计可以激发各种流体应用中节能液滴生产技术的可能性,例如喷涂和印刷。它可以进一步改善用于高速液滴操纵,液体输送和水蒸气捕获的其他流体系统。

著录项

  • 来源
    《ACS nano》 |2019年第11期|共9页
  • 作者单位

    Chinese Acad Sci Tech Inst Phys &

    Chem CAS Key Lab Bioinspired Mat &

    Interfacial Sci Beijing 100190 Peoples R China;

    Beihang Univ Key Lab Bioinspired Smart Interfacial Sci &

    Techn Beijing Adv Innovat Ctr Biomed Engn Minist Educ Sch Chem Beijing 100191 Peoples R China;

    Beihang Univ Key Lab Bioinspired Smart Interfacial Sci &

    Techn Beijing Adv Innovat Ctr Biomed Engn Minist Educ Sch Chem Beijing 100191 Peoples R China;

    Chinese Acad Sci Tech Inst Phys &

    Chem CAS Key Lab Bioinspired Mat &

    Interfacial Sci Beijing 100190 Peoples R China;

    Chinese Acad Sci Tech Inst Phys &

    Chem CAS Key Lab Bioinspired Mat &

    Interfacial Sci Beijing 100190 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;
  • 关键词

    tip structure; surface energy gradient; liquid jetting; droplet emission; bioinspired;

    机译:尖端结构;表面能梯度;液体喷射;液滴发射;生物悬浮;

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