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Linear and bending actuation of bucky gel

机译:Cucky Gel的线性和弯曲致动

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In 2003 Takuzo Aida and coworkers reported that single-walled carbon nanotubes (SW-CNTs), when ground with imidazolium based ionic liquids (ILs), create a physical gel, named "bucky gel"'. This gel was used to prepare bimorph electrochemical actuators using a polymer-supported internal IL electrolyte layer2. These actuators can operate in air at low voltage showing improved frequency response and strain. Usual bucky gel actuators rely on a bimorph configuration where the electrodes are used alternatively as cathode and anode thus producing a bending motion. This kind of motion is limiting the possible applications, especially when, like in artificial muscles, linear strain and motion are required. We present a new design for bucky gel actuators capable of both linear and bending motion that uses a three electrode configuration with two active electrodes and a third passive one, made from a metal spring (serpentine shaped), acting as counter plate. We have built such a device and report here its linear and bending actuation performance. In these preliminary experiments we have obtained a linear strain of 0.6% and a bending strain difference between two bucky gel electrodes of 0.25%.
机译:2003年,Takuzo Aida和同事报告说,单壁碳纳米管(SW-CNT),当与咪唑鎓基离子液体(ILS)接地时,产生一个名为“Bucky Gel”的物理凝胶。该凝胶用于使用聚合物负载的内部IL电解质层2制备Bimorph电化学致动器。这些致动器可以在低电压下在空气中操作,显示出改善的频率响应和应变。通常的Bucky凝胶致动器依赖于Bimorph配置,其中电极作为阴极和阳极使用,从而产生弯曲运动。这种运动是限制可能的应用,特别是当在人造肌肉中,需要线性应变和运动时。我们提出了一种新的抗凝胶致动器设计,其能够用具有两个有源电极的三个电极配置和由金属弹簧(蛇形形状)制成的三个电极配置,用作逆板的线性和弯曲运动。我们已经建立了这样的设备并在此报告其线性和弯曲致动性能。在这些初步实验中,我们已经获得了0.6%的线性菌株,两个抗凝胶电极之间的弯曲应变差为0.25%。

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