首页> 外文会议>Conference on electroactive polymer actuators and devices;EAPAD; 20090309-12;20090309-12; San Diego, CA(US);San Diego, CA(US) >Novel thermoplastic elastomeric gels as high performance actuators with no mechanical pre-strain
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Novel thermoplastic elastomeric gels as high performance actuators with no mechanical pre-strain

机译:新型热塑性弹性体凝胶,无需机械预应变即可作为高性能执行机构

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Nanostructured organic materials derived from block copolymers solvated by block-selective solvents have shown considerable potential as versatile dielectric elastomers. These materials can easily be tuned to achieve the mechanical and electrical properties required for actuator applications. They are lightweight and attractive due to their facile processing, robust properties and reliable performance. Their superb actuation behavior is realized when they are used as dielectric materials under actuation conditions promoting Maxwell compression, which produces large mechanical displacements, coupling efficiencies, and energy densities. These properties generally improve when the material is subjected to mechanical pre-strain. In most cases, mechanical pre-strain is needed to safely achieve application of a desired electrical field. Requisite pre-strain generally necessitates additional overhead in terms of weight and space for the device, and promotes changes in mechanical properties. In this study a new electroactive nanostructured polymer (ENP) is prepared from a triblock copolymer and a nonvolatile block-selective solvent, and evaluated as an actuator candidate. The copolymer exhibits reasonably high actuation strains (up to 70 area%) at relatively low electric fields and energy densities up to 50 kJ/m~3 without pre-strain. These performance metrics exceed those reported for conventional dielectric materials such as the VHB acrylic elastomer, as well as those of ENPs derived from styrenic triblock copolymers under no pre-strain.
机译:由嵌段选择溶剂溶剂化的嵌段共聚物衍生的纳米结构有机材料已显示出作为通用介电弹性体的巨大潜力。可以轻松地调整这些材料以获得执行器应用所需的机械和电气性能。它们轻巧且具有吸引力,这归因于其便捷的加工,强大的性能和可靠的性能。当它们在促进麦克斯韦压缩的致动条件下用作介电材料时,就可以实现其出色的致动性能,从而产生较大的机械位移,耦合效率和能量密度。当材料经受机械预应变时,这些性能通常会提高。在大多数情况下,需要机械预应变才能安全地实现所需电场的施加。要求的预应变通常需要增加设备重量和空间,从而增加机械开销。在这项研究中,一种新的电活性纳米结构聚合物(ENP)由三嵌段共聚物和不挥发的嵌段选择性溶剂制备而成,并被评估为促动器候选物。该共聚物在相对较低的电场下表现出相当高的驱动应变(高达70面积%),并且在没有预应变的情况下的能量密度高达50 kJ / m〜3。这些性能指标超过了常规介电材料(如VHB丙烯酸弹性体)以及无预应变下衍生自苯乙烯三嵌段共聚物的ENP的报告指标。

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