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Hydrostatically Coupled Dielectric Elastomer Actuators: New Opportunities for Haptics

机译:静电耦合介电弹性体执行器:触觉的新机会

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Dielectric elastomer actuators (DEAs) have been demonstrated to represent today a high-performance technology for electromechanical transducers based on electroactive polymers. As a means to improve versatility and safety of DEAs for several fields of application, so-called 'hydrostatically coupled' DEAs (HC-DEAs) have recently been described. HC-DEAs are based on an incompressible fluid that mechanically couples a DE-based active part to a passive part interfaced to the load, so as to enable hydrostatic transmission. This paper presents ongoing developments of bubble-like HC-DEAs and their promising potential application in the field of haptics. In particular, the first part of the paper describes a static and dynamic characterization of a prototype actuator made of two pre-stretched membranes (20 mm wide, 1.8 mm high, and 60 μm thick) of 3M VHB acrylic elastomer, coupled via silicone grease. The actuator exhibited a maximum stress of 1.3 kPa at 4.4 kV, a relative displacement of-80% at 4.4 kV, a -3dB bandwidth of 3 Hz, and a resonance frequency of 160 Hz. The second part of the paper presents possible applications of the tested actuator configuration for haptic interfaces. Two specific examples are considered. The first deals with a wearable tactile/haptic display used to provide users with tactile feedback during electronic navigation in virtual environments. The display consists of HC-DEAs arranged in contact with finger tips. As a second example of usage, an up-scaled prototype version of an 8-dots refreshable cell for dynamic Braille displays is shown. Each Braille pin consists of a miniature HC-DEA, with a diameter lower than 2 mm. Both types of applications clearly show the potential of the new technology and the prospective opportunities for haptics.
机译:已经证明了介电弹性体致动器(DEA)今天代表了基于电活性聚合物的机电传感器的高性能技术。作为改善诸如诸如若干应用领域的饮食的多功能性和安全性,最近被描述了所谓的“静液耦合”枯萎(HC-DEA)。 HC-DEA基于不可压缩的流体,该不可压缩的流体机械地将基于DE的有源部分耦合到界面接合到负载的无源部分,以便能够使静液压传输。本文提出了较阳性的HC-DEA的持续发展,以及他们在触觉领域的有希望的潜在应用。特别地,本文的第一部分描述了由3M VHB丙烯酸弹性体的两个预拉伸膜(20mm宽,1.8mm高,60μm厚)制成的原型致动器的静态和动态表征,通过硅氧烷润滑脂偶联。致动器在4.4kV下表现出1.3kPa的最大应力,相对位移为-80%,4.4kV,3 Hz的-3dB带宽,以及160Hz的共振频率。纸张的第二部分呈现了测试的执行器配置对触觉界面的可能应用。考虑了两个具体的例子。第一批可穿戴触觉/触觉显示器,用于为用户提供虚拟环境中电子导航期间的触觉反馈。显示器由与手指提示接触的HC-DEA组成。作为使用的第二个例子,示出了用于动态盲文显示器的8点钟令人耳机显示屏的上缩放的原型版本。每个盲文别针由微型HC-DEA组成,直径低于2毫米。两种类型的应用都清楚地表明了新技术的潜力和触觉的前瞻性机会。

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