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The Influence of Static Pre-stretching on the Mechanical Ageing of Filled Silicone Rubbers for Dielectric Elastomer Applications

机译:静态预拉伸对介电弹性体应用中填充硅橡胶机械老化的影响

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摘要

Abstract Dielectric elastomer (DE) pre-stretching is a key aspect of attaining better actuation performance, as it helps prevent electromechanical instability (EMI) and usually lowers the Young's modulus, thus leading to easier deformation. The pre-stretched {DE} is not only susceptible to a high risk of tearing and the formation of mechanical defects, but films with sustained and substantial strain may also experience mechanical degradation. In this study a long-term mechanical reliability study of {DE} is performed. Young's moduli, dielectric breakdown strengths and dielectric permittivities of commercial silica-reinforced silicone elastomers, with and without an additional 35 (35 phr) of titanium dioxide (TiO2), were investigated after being subjected to pre-stretching for various timespans at pre-stretches to strains of 60 and 120, respectively. The study shows that mechanical stability when pre-stretching is difficult to achieve with highly filled elastomers. However, despite the negative outlook for metal oxide-filled silicone elastomers, the study paves the way for reliable dielectric elastomers by indicating that simply post-curing silicone elastomers before use may increase reliability.
机译:摘要介电弹性体(DE)的预拉伸是获得更好的驱动性能的关键方面,因为它有助于防止机电不稳定性(EMI)并通常降低杨氏模量,从而使变形更容易。预拉伸的{DE}不仅容易遭受撕裂和形成机械缺陷的高风险,而且具有持续且较大应变的薄膜也可能会发生机械降解。在这项研究中,对{DE}进行了长期的机械可靠性研究。在进行预拉伸各种时间跨度的预拉伸后,研究了市售二氧化硅增强的有机硅弹性体(含和不含35(35 phr)二氧化钛(TiO2))的杨氏模量,介电击穿强度和介电常数。分别对60和120株。研究表明,使用高度填充的弹性体很难实现预拉伸时的机械稳定性。然而,尽管对金属氧化物填充的有机硅弹性体前景不佳,但该研究表明,在使用前简单地对有机硅弹性体进行后固化可以提高可靠性,从而为可靠的介电弹性体铺平了道路。

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