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首页> 外文期刊>Lab on a chip >Microfluidic solid phase suspension transport with an elastomer-based, single piezo-actuator, micro throttle pump
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Microfluidic solid phase suspension transport with an elastomer-based, single piezo-actuator, micro throttle pump

机译:基于弹性体的单压电致动器,微节流泵进行微流固相悬浮运输

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We report a Micro Throttle Pump (MTP) which has been shown to pump 5 μm diameter polystyrene beads at a concentration of 4.5 * 10~7 beads ml~(-1). This new MTP design is constructed in a straightforward manner and actuated by a single piezoelectric (PZT) element. Maximum flow rates at 800 Hz drive frequency of 132 μl min~(-1) with water and 108 μl min~(-1) with a bead suspension were obtained. Maximum back-pressures of 6 kPa were observed in both cases. The reported MTP employs specific location of distinct internal microfluid structures cast in a single compliant elastomeric substrate to exploit the opposing directions of flexure of regions of a piezoelectric–glass composite bonded to the elastomer. By this novel means, distinct flexural regions, exhibiting compressive and tensile stresses respectively, allow both the pump's integrated input and output throttles and its pump chamber to be actuated concurrently by a single PZT. To support MTP design we also report the characterisation of an individual throttle's resistance as a function of actuator deflection and discuss the underlying mechanism of the throttling effect.
机译:我们报告了一个微型油门泵(MTP),该泵已被证明可以以4.5 * 10〜7个微珠ml〜(-1)的浓度泵送直径5μm的聚苯乙烯微珠。这种新的MTP设计以简单的方式构造,并由单个压电(PZT)元件驱动。在800 Hz的驱动频率下,最大水流量为132μlmin〜(-1)用水和108μlmin〜(-1)的磁珠悬浮液。在两种情况下均观察到最大背压为6 kPa。报道的MTP采用在单一顺应性弹性体基材中浇铸的不同内部微流体结构的特定位置,以利用与弹性体结合的压电玻璃复合材料区域的相反弯曲方向。通过这种新颖的方式,分别显示压缩应力和拉伸应力的不同挠曲区域,可通过单个PZT同时驱动泵的集成输入和输出节气门及其泵腔。为了支持MTP设计,我们还报告了单个油门阻力与执行器挠度的关系,并讨论了节流作用的潜在机理。

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