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Controllable direction of liquid jets generated by thermocavitation within a droplet

机译:液滴内热电偶产生的液体喷射的可控方向

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摘要

A high-velocity fluid stream ejected from an orifice or nozzle is a common mechanism to produce liquid jets in inkjet printers or to produce sprays among other applications. In the present research, we show the generation of liquid jets of controllable direction produced within a sessile water droplet by thermocavitation. The jets are driven by an acoustic shock wave emitted by the collapse of a hemispherical vapor bubble at the liquid-solid/substrate interface. The generated shock wave is reflected at the liquid-air interface due to acoustic impedance mismatch generating multiple reflections inside the droplet. During each reflection, a force is exerted on the interface driving the jets. Depending on the position of the generation of the bubble within the droplet, the mechanical energy of the shock wave is focused on different regions at the liquid-air interface, ejecting cylindrical liquid jets at different angles. The ejected jet angle dependence is explained by a simple ray tracing model of the propagation of the acoustic shock wave inside the droplet. (C) 2017 Optical Society of America
机译:从孔口或喷嘴喷射的高速流体流是在喷墨打印机中产生液体喷射或在其他应用中产生喷雾的常用机制。在本研究中,我们展示了通过热通过能量在无柄水滴内产生的可控方向的液体喷射。喷射器由液体固体/衬底界面处的半球蒸气泡的塌陷发射的声学冲击波驱动。由于声阻抗错配在液滴内产生多次反射,所产生的冲击波反射在液体 - 空中接口处。在每个反射期间,在驱动喷射器的界面上施加力。根据液滴内产生气泡的位置,冲击波的机械能聚焦在液体空气接口处的不同区域上,以不同的角度喷射圆柱形液体射流。喷射的喷射角度依赖性通过液滴内的声冲击波传播的简单射线跟踪模型来解释。 (c)2017年光学学会

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  • 来源
    《Applied optics》 |2017年第25期|共7页
  • 作者单位

    Benemerita Univ Autonoma Puebla Inst Ciencias Puebla 72050 Mexico;

    Inst Nacl Astrofis Opt &

    Electr Dept Opt Puebla 7200 Mexico;

    Inst Nacl Astrofis Opt &

    Electr Dept Opt Puebla 7200 Mexico;

    Inst Nacl Astrofis Opt &

    Electr Dept Opt Puebla 7200 Mexico;

    Univ Calif Riverside Dept Mech Engn Riverside CA 92521 USA;

    Benemerita Univ Autonoma Puebla Inst Ciencias Puebla 72050 Mexico;

    Inst Nacl Astrofis Opt &

    Electr Dept Opt Puebla 7200 Mexico;

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  • 正文语种 eng
  • 中图分类 应用;
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