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首页> 外文期刊>Journal of Micromechanics and Microengineering >Reduction of droplet-size dispersion in parallel flow-focusing microdevices using a passive method
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Reduction of droplet-size dispersion in parallel flow-focusing microdevices using a passive method

机译:使用被动方法减少并行流聚焦微器件中的液滴尺寸分散

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Flow-focusing devices can be used to produce microparticles at low cost, with the added advantage of low dispersion in the size of the generated particles. However, when multiple parallel devices are used with common inputs to massively produce the microparticles, the overall production is poly disperse, usually due to differences in flow rates of the focused fluid through each single device. The solution to uniformize this flow rate can involve active, movable devices that would add complexity and cost to the system. A simpler solution is to add distribution and equalization channels that drive focused fluid to the inputs. Experimental results show that this method can reduce the total dispersion, and render the multiple device close to monodispersion.
机译:流动聚焦装置可用于以低成本生产微粒,并具有在所产生的微粒的尺寸中的低分散性的附加优点。然而,当使用多个具有共同输入的并行装置来大量生产微粒时,通常是由于通过每个单个装置的聚焦流体的流速不同,所以总的生产是多分散的。统一此流速的解决方案可能涉及有源的可移动设备,这将增加系统的复杂性和成本。一个更简单的解决方案是添加分配和均衡通道,以将聚焦的流体驱动到输入端。实验结果表明,该方法可以减少总色散,并使多个器件接近单色散。

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