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Passive flow control in microdevices using thermally responsive polymer solutions

机译:使用热响应聚合物溶液的微型设备中的被动流量控制

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Thermally responsive polymer solutions have previously been used in microchannels with integrated heaters for active valving. Here we present a detailed study of the rheological behavior of these complex fluids, suggesting the broad range of conditions under which active valving could be used, along with an investigation of their use for passive microflow control in which viscous heating leads to channel blockage. We discuss the scaling of viscous heating in the channels under constant flow rate and constant pressure drop conditions. In the case of pressure-driven flow through a microchannel, we demonstrate that viscous heating can cause periodic gel formation leading to flow instabilities. Velocity fields above and below the gel temperature were mapped using digital particle image velocimetry; above the gel temperature, flow fluctuations may be caused by the competing mechanisms of thermothickening and shear-thinning. (C) 2006 American Institute of Physics.
机译:热响应聚合物溶液以前已在带有集成加热器的微通道中用于主动阀。在这里,我们对这些复杂流体的流变行为进行了详细的研究,提出了可以使用主动阀的广泛条件,并研究了它们用于被动微流控制的情况,其中粘性加热会导致通道阻塞。我们讨论了在恒定流量和恒定压降条件下通道中粘性加热的比例。在压力驱动的微通道流动情况下,我们证明了粘性加热会导致周期性的凝胶形成,从而导致流动不稳定。使用数字粒子图像测速仪绘制凝胶温度以上和以下的速度场;高于凝胶温度时,流动增厚可能是由热增稠和剪切稀化的竞争机制引起的。 (C)2006美国物理研究所。

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