首页> 外文会议>International Solid-State Sensors, Actuators and Microsystems Conference >ADAPTIVE GAS PUMPING BY CONTROLLED TIMING OF ACTIVE MICROVALVES IN PERISTALTIC MICROPUMPS
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ADAPTIVE GAS PUMPING BY CONTROLLED TIMING OF ACTIVE MICROVALVES IN PERISTALTIC MICROPUMPS

机译:通过受控时序在蠕动微泵中的主动微型纤维控制定时自适应气体泵送

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We report theoretical and experimental results on adaptive gas pumping by actively controlling microvalve timing in a multi-stage peristaltic micropump. Since gas is compressible, control of timing of the valve actuation relative to pump membrane actuation can modulate gas compression and transfer periods, resulting in adaptive and programmable pumping. A peristaltic 18-stage electrostatic gas micropump that utilizes fluidic resonance for high flow rate and multi-stage peristaltic configuration for high pressure is fabricated and tested. It includes 10 inlet and 9 outlet microvalves. When the duration of time when microvalves are opened is changed between 0.05 and 0.35 cycles, the micropump produced wide ranges of pressure between 7.3 and 3.3 kPa and flow rates between 0.29 and 0.07 sccm. These results correspond to a variation of pressure and flow rate by 110% and 400%, respectively.
机译:我们通过在多级蠕动微泵中积极控制微型稳态时间来报告自适应气体泵送的理论和实验结果。由于气体是可压缩的,因此控制阀致动相对于泵膜致动的定时可以调节气体压缩和转移周期,从而产生自适应和可编程的泵送。一种蠕动18级静电气体微泵,采用对高流速的流体共振和用于高压的多级蠕动构型进行制造和测试。它包括10个入口和9个出口微型纤维。当微型阀打开时的持续时间在0.05和0.35周期之间发生变化时,微泵在7.3和3.3kPa之间产生的宽范围和0.29和0.07 sccm之间的流速。这些结果对应于压力和流速的变化分别为110%和400%。

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