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Carbon nanotube alignment driven rapid actuations

机译:碳纳米管对准驱动快速驱动

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摘要

Suspended micro-beams made from aligned carbon nanotubes and parylene deflect reversibly in an ac field and the deflection rate is three orders of magnitude greater than those for existing devices. The direction of beam deflection is determined by the area moment of inertia and the actuation mechanism involves rapid accumulation of charges at tube surfaces, the creation of Coulomb repulsive forces between tubes, beam dilation and the formation of compressive stresses at beam ends. Tube alignment plays a crucial role in the first step as is verified by experimental data and calculation.
机译:由对准的碳纳米管和聚对二甲苯制成的悬浮微束在交流场中可逆地偏转,偏转率比现有器件大3个数量级。束偏转的方向由区域惯性矩决定,其致动机制包括电荷在管表面的快速积累,在管之间产生库仑排斥力,束膨胀以及在束端形成压应力。经实验数据和计算验证,管对准在第一步中起着至关重要的作用。

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