首页> 外文会议>Annual International Conference on Micro Electro Mechanical Systems >VIRTUAL COMPONENTS FOR DROPLET CONTROL USING MARANGONI FLOWS: SIZE-SELECTIVE FILTERS, TRAPS, CHANNELS, AND PUMPS
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VIRTUAL COMPONENTS FOR DROPLET CONTROL USING MARANGONI FLOWS: SIZE-SELECTIVE FILTERS, TRAPS, CHANNELS, AND PUMPS

机译:使用Marangoni流程的液滴控制的虚拟组件:尺寸选择过滤器,陷阱,通道和泵

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This paper describes several microfluidic components, including channels, filters, traps, and pumps, for manipulating aqueous droplets suspended in a film of oil on blank, unpatterned substrates. These "virtual" devices have no physical structure; they accomplish their function entirely by localized Marangoni flows created in a non-contact manner by heat sources suspended just above the liquid surface. Various flow patterns can be engineered through the geometric design of the heat sources on size scales ranging from 10-1,000 μm. Channels and circular traps, emulated by linear and annular heat fluxes respectively, demonstrate nearly 100% selectivity for droplets ranging from 300-1,000 μm. A pump, emulated by a triangular heat flux with a 10° taper, translates droplets of about the same range at speeds up to 200 μm/s.
机译:本文介绍了几种微流体组分,包括通道,过滤器,疏水阀和泵,用于操纵悬浮在坯料的油薄膜中的液滴,无染色的基材。这些“虚拟”设备没有物理结构;它们完全由局部化的Marangoni流动完成其在非接触方式中以非接触方式悬浮在液体表面上方的情况下创造的。可以通过10-1000μm的大小尺寸的热源的几何设计来设计各种流动模式。分别通过线性和环形热通量模拟的通道和圆形陷阱,展示近100%的液滴选择性,范围为300-1,000μm。由具有10°锥度的三角热通量模拟的泵,将液滴与高达200μm/ s的速度转化为大约相同范围的液滴。

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