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Precise Assembling Of Individual Micro Chains Based On Acoustic Radiation

机译:基于声辐射的单个微链的精确组装

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In this paper, we present an attractive acoustic assembling manipulation (AAM) methodology to efficiently and reproducibly assemble micro objects. The experimental system consists of a signal generator, a power amplifier, a acoustofluidic chip and an optical microscope. The acoustofluidic chip is fabricated through a typical micro-electromechanical system(MEMS) strategy. When a sinusoidal electrical signal is applied to the piezoelectric transducer of the acoustofluidic chip, a standing flexural vibration mode of the chip will be excited to generate a local acoustic radiation around the V type micro structures. Particles suspending in the liquid media will be trapped to the micro structures firstly and then be driven to assemble individual chains at the tips of such structures. This new acoustic assembling method solely relying on the localized radiation forces are capable of quick response, parallel manipulation and precise assembling with the synthetic micro particles. Such facile assembling method provides another compelling alternative for nano engineering communities to investigate the particle interactions and opens a new door for developing configurable nano robots.
机译:在本文中,我们提出了一种有吸引力的声学组装操纵(AAM)方法,可有效且可重复地组装微型对象。实验系统由信号发生器,功率放大器,声流芯片和光学显微镜组成。声流体芯片是通过典型的微机电系统(MEMS)策略制造的。当将正弦电信号施加到声流芯片的压电换能器时,将激发芯片的立式弯曲振动模式,以在V型微结构周围产生局部声辐射。悬浮在液体介质中的颗粒将首先被捕获到微结构中,然后被驱动以在此类结构的尖端组装单个链。这种仅依靠局部辐射力的新型声学组装方法能够快速响应,并行操作以及与合成微粒的精确组装。这种简便的组装方法为纳米工程界研究粒子相互作用提供了另一种引人注目的替代方法,并为开发可配置的纳米机器人打开了新的大门。

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