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首页> 外文期刊>Journal of Micromechanics and Microengineering >A low-voltage droplet microgripper for micro-object manipulation
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A low-voltage droplet microgripper for micro-object manipulation

机译:用于微物体操纵的低压微滴钳

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We present a low-voltage microgripper utilizing a liquid droplet to pick up and release micro-objects. Lifting force is generated by a liquid bridge formed between the gripper surface and an object. Electrowetting was used to dynamically change the capillary lifting forces and enable easy object release. The driving voltage was applied to a pair of coplanar interdigitated electrodes, eliminating the need for an electrode on top of the droplet and thus significantly facilitating object manipulation. A barium strontium titanate insulation layer was used to lower the driving voltage. Experiments indicated that the lifting forces can be as high as 213μN at a driving voltage of 28 V. Experiments also demonstrated a low-voltage, low power consumption soft microgripper by picking up and releasing micro glass beads.
机译:我们提出了一种利用液滴来拾取和释放微物体的低压微夹钳。提升力由在抓取器表面和物体之间形成的液桥产生。电润湿被用来动态地改变毛细管的提升力,并使物体易于释放。将驱动电压施加到一对共面的叉指电极上,从而无需在液滴顶部放置电极,从而大大方便了物体的操纵。钛酸锶锶钡绝缘层用于降低驱动电压。实验表明,在28 V的驱动电压下,提升力可高达213μN。实验还通过拾取和释放微玻璃珠,证明了低电压,低功耗的软微夹持器。

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