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) >The influence of mechanical properties in the electrical breakdown in poly-styrene-ethylene-butadiene-styrene thermoplastic elastomer
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The influence of mechanical properties in the electrical breakdown in poly-styrene-ethylene-butadiene-styrene thermoplastic elastomer

机译:力学性能对聚苯乙烯-乙烯-丁二烯-苯乙烯热塑性弹性体电击穿的影响

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Dielectric elastomer actuators (DEA) are a class of eletro-active polymers with promising properties for a number of applications, however, such actuators are prone to failure. One of the leading failure mechanisms is the electrical breakdown. It is already well-known that the electro-mechanical actuation properties of DEA are strongly influenced by the mechanical properties of the elastomer and compliant electrodes. It was recently suggested that also the electrical breakdown in such soft materials is influenced by the mechanical properties of the elastomer. Here, we present stress-strain measurements obtained on two tri-block thermoplastic elastomers (SEBS 500040 and SEBS 500120, poly-styrene-ethylene-butadiene-styrene), with resulting large differences in mechanical properties, and compare them to measurements on the commonly used VHB 4910. Materials were prepared by either direct heat-pressing of the raw material, or by dissolving in toluene, centrifuging and drop-casting. Experiments showed that materials prepared with identical processing steps showed a difference in stiffness of about 20%, where centrifuged and drop-casted films were seen to be softer than heat-pressed films. Electric breakdown measurements showed that for identically processed materials, the stiffness seemed to be a strong indicator of the electrical breakdown strength. It was therefore found that processing leads to differences in both stiffness and electrical breakdown strength. However, unexpectedly, the softer drop-cast films had a much higher breakdown strength than the heat-pressed films. We attribute this effect to impurities still present in the heat-pressed films, since these were not purified by centrifuging.
机译:介电弹性体致动器(DEA)是一类具有许多应用前景的电活性聚合物,但是,这种致动器容易失效。领先的故障机制之一是电气故障。众所周知,DEA的机电致动性能受弹性体和柔性电极的机械性能的强烈影响。最近提出,在这种软材料中的电击穿也受弹性体的机械性能影响。在这里,我们介绍了在两种三嵌段热塑性弹性体(SEBS 500040和SEBS 500120,聚苯乙烯-乙烯-丁二烯-苯乙烯)上获得的应力-应变测量结果,其机械性能差异很大,并将它们与通常的测量结果进行比较。使用的是VHB4910。材料是通过直接对原材料进行热压或将其溶于甲苯,离心和滴铸而成。实验表明,采用相同加工步骤制备的材料的刚度差异约为20%,其中离心和滴铸薄膜比热压薄膜更柔软。电击穿测量表明,对于相同加工的材料,刚度似乎是电击穿强度的有力指标。因此,发现加工导致刚度和电击穿强度的差异。然而,出乎意料的是,较软的滴铸薄膜具有比热压薄膜高得多的击穿强度。我们将此影响归因于仍存在于热压薄膜中的杂质,因为这些杂质并未通过离心纯化。

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