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Experimental investigation of the electromechanical phase transition in a dielectric elastomer tube

机译:介电弹性体管中机电相变的实验研究

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A membrane of dielectric elastomer undergoes a large deformation when it is subjected to a voltage through the thickness. Due to the attributes of light weight and high energy density, dielectric elastomers are suitable for electromechanical actuators and generators. In this work, the phenomenon of electromechanical phase transition is demonstrated experimentally in a tube of dielectric elastomer subjected to an internal pressure, an axial force and a voltage. When the voltage exceeds a critical value, the homogeneous deformation becomes unstable, and the tube deforms into coexistent states of bulged and unbulged sections. At the transition voltage the unbulged sections gradually bulge up and propagate. Two stable states are observed at the end of the phase transition process: one is coexistent states of the bulged and unbulged sections; the other is the wholly bulged tube. The achieved maximum voltage-induced deformation of the tube is 2200% in area, and the electromechanical energy conversion density is estimated to be 1.13 J g(-1). These results are beyond the largest values reported in the literature. A theoretical analysis based on thermodynamics is carried out to qualitatively explain the observed experimental phenomenon.
机译:当介电弹性体的膜经受整个厚度的电压时,会发生很大的变形。由于重量轻和能量密度高的特性,介电弹性体适用于机电执行器和发电机。在这项工作中,机电相变的现象在经历内压,轴向力和电压的介电弹性体管中进行了实验证明。当电压超过临界值时,均匀变形变得不稳定,并且管变形为凸出部分和非凸出部分的共存状态。在过渡电压下,未鼓起的部分逐渐鼓起并传播。在相变过程结束时观察到两个稳定状态:一个是凸起部分和非凸起部分同时存在的状态;另一种是凸起部分和未凸起部分同时存在。另一个是完全凸出的管。达到的最大电压诱发的管形变面积为2200%,机电能量转换密度估计为1.13 J g(-1)。这些结果超出了文献报道的最大值。进行了基于热力学的理论分析,以定性解释观察到的实验现象。

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