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首页> 外文期刊>Microgravity science and technology >Generation of Gas Bubbles in Microflow Using Micropipette with Ultrasound
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Generation of Gas Bubbles in Microflow Using Micropipette with Ultrasound

机译:使用超声微量移液器在微流中产生气泡

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摘要

Ultrasound was applied to a micropipette micromixer to improve dispersion of gas and liquid in a microchannel. Flow visualization using a high-speed camera was performed to examine the effect of ultrasonic irradiation on bubble generation in the microchannel. Basically, nitrogen gas was injected using a (0.5 μm ID) glass micropipette into ethanol flowing in a rectangular (100 μm × 200 μm) microchannel on polydimethylsiloxane (PDMS). Gas and liquid flow rates were regulated using mass flow controllers. At a flow condition that is typical of bubbly flow, ultrasound was transmitted into the microchannel using a piezo-electric (PZT) transducer over a range of operating voltages (2 to 200 Vp-p) and frequencies (50 to 60 kHz). Images captured during the action of the PZT transducer indicate that bubble formation is influenced by ultrasound. When subjected to ultrasound above 50 Vp-p and at the resonant frequency of the PZT transducer, bubbles formed that were smaller and closer together, signifying enhanced shearing of the gas at the micropipette tip by the liquid. The observation of gas slugs occurring sooner might be attributed to the coalescence of gas bubbles that became closely spaced.
机译:将超声应用于微量移液器微混合器,以改善气体和液体在微通道中的分散。使用高速相机进行流动可视化以检查超声辐射对微通道中气泡生成的影响。基本上,使用(0.5μmID)玻璃微量移液器将氮气注入到在聚二甲基硅氧烷(PDMS)上以矩形(100μm×200μm)微通道流动的乙醇中。使用质量流量控制器调节气体和液体的流速。在典型的气泡流动条件下,使用压电(PZT)传感器在一定的工作电压(2至200 Vp-p)和频率(50至60 kHz)范围内将超声波传输到微通道中。在PZT换能器动作期间捕获的图像表明,气泡会受到超声波的影响。当在PZT换能器的共振频率下接受高于50 Vp-p的超声波时,形成的气泡更小且更靠近在一起,这表明液体在微量移液器尖端对气体的剪切增强。观察到气体团块的发生较早可能是由于气泡紧密结合而形成的。

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