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Rotary polymer micromachines: in situ fabrication of microgear components in microchannels

机译:旋转聚合物微机械:在微通道中原位制造微齿轮组件

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摘要

This paper presents in situ fabrication of polymeric machine elements operated by hydrodynamic forcing. With a single-step production, rotary polymer microgears are installed in microfluidic channels via UV-induced polymerization. First, a single microgear is formed, and its rotational performance is characterized as a function of the flow rate of a polymer solution. Then, the rotation of multiple microgears in a single microchannel is demonstrated, where all of the gears are driven by a single fluid flow stream. Finally, paired microgears are fabricated, and the gears show the ability to transmit torque. This ability may be integrated to build polymer microelectromechanical systems that are useful for biomedical applications.
机译:本文介绍了通过流体动力强迫操作的聚合物机械元件的原位制造。通过一步生产,可将旋转聚合物微齿轮通过紫外线诱导的聚合反应安装在微流体通道中。首先,形成单个微齿轮,并将其旋转性能表征为聚合物溶液流速的函数。然后,演示了单个微通道中多个微齿轮的旋转,其中所有齿轮均由单个流体流驱动。最终,制造了成对的微型齿轮,齿轮显示了传递扭矩的能力。可以整合这种能力来构建可用于生物医学应用的聚合物微机电系统。

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