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Dielectric elastomer actuators using Slide-Ring Material (R) with increased permittivity

机译:使用具有较高介电常数的滑环材料(R)的介电弹性体执行器

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The inclusion of high permittivity nanoparticles in elastomeric materials for dielectric elastomer actuators (DEAs) is one promising method to achieve large strain at relatively low applied voltages. However, the addition of these nanoparticles tends to increase the stiffness of the elastomer and disturbs the actuation of the DEA. This is attributed to restriction of the chain motion in the elastomer by the nanoparticles. Slide-Ring Material (R) (SRM) is a cross-linked polymeric material with freely movable cross-linking sites. The internal stresses in this structure are dramatically homogenized by the pulley effect; therefore, the restriction of chain motion due to the nanoparticles is expected to be significantly reduced. We have employed SRM as a host elastomer for a DEA with the addition of ferroelectric BaTiO3 (BT) nanoparticles. The effects of BT addition on the permittivity, stiffness and viscosity of the SRM-BT nanocomposites, and the actuation strain of DEAs using SRM were evaluated. The permittivity of the nanocomposites increased linearly with the concentration of BT and reached 3.6 times that for pure SRM at 50 wt%. The elastic modulus and the viscosity remained almost constant up to 20 wt% and then decreased above this concentration. The actuation strain of a planar actuator using SRM and 50 wt% BT was four times larger than that of the DEA with pure SRM.
机译:在介电弹性体致动器(DEA)的弹性体材料中包含高介电常数纳米粒子是一种在相对较低的施加电压下实现大应变的有前途的方法。然而,这些纳米颗粒的添加趋于增加弹性体的刚度并干扰DEA的致动。这归因于纳米颗粒对弹性体中链运动的限制。滑环材料(R)(SRM)是具有可自由移动的交联部位的交联聚合物材料。滑轮效应使这种结构的内部应力显着均匀化。因此,预期将显着降低由于纳米粒子引起的链运动的限制。我们已将SRM用作DEA的主体弹性体,并添加了铁电性BaTiO3(BT)纳米粒子。评估了添加BT对SRM-BT纳米复合材料的介电常数,刚度和粘度以及使用SRM的DEA的驱动应变的影响。纳米复合材料的介电常数随BT浓度线性增加,达到纯SRM(50 wt%)的3.6倍。弹性模量和粘度几乎保持恒定,直至20wt%,然后在该浓度以上下降。使用SRM和50 wt%BT的平面致动器的致动应变是使用纯SRM的DEA的致动应变的四倍。

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