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Hydrostatically coupled dielectric elastomer actuators for tactile displays and cutaneous stimulators

机译:触觉显示器和皮肤刺激器的静液压耦合介电弹性体执行器

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Hydrostatic coupling has been recently reported as a means to improve versatility and safety of dielectric elastomer (DE) actuators. Hydrostatically coupled DE actuators rely on an incompressible fluid that mechanically couples a DE-based active part to a passive part interfaced to the load. In this paper, we present ongoing development of bubble-like versions of such transducers, made of silicone and oil. In particular, the paper describes millimeter-scale actuators, currently being developed as soft, light, acoustically silent and cheap devices for two types of applications: tactile displays and cutaneous stimulators. In both cases, the most significant advantages of the proposed technology are represented by high versatility for design (due to the fluid based transmission mechanism), tailorable stiffness perceived by the user (obtained by adjusting the internal fluid pressure), and suitable electrical safety (enabled by both a passive interface with the user and the insulating internal fluid). Millimeter-scale prototypes showed a resonance frequency of about 250 Hz, which represents the value at which Pacinian cutaneous mechanoreceptors exhibit maximum sensitivity; this provides an optimum condition to eventually code tactile information dynamically, either in combination or as an alternative to static driving.
机译:最近已经报道了静液压耦合作为改善介电弹性体(DE)致动器的通用性和安全性的一种手段。静液压耦合的DE执行器依靠不可压缩的流体,该流体将基于DE的主动部件机械地耦合到与负载连接的被动部件。在本文中,我们介绍了由硅树脂和油制成的此类传感器的气泡状版本的持续开发。特别是,本文描述了毫米级执行器,目前已开发为柔软,轻巧,无声且价格低廉的设备,可用于两种类型的应用:触觉显示器和皮肤刺激器。在这两种情况下,所提出技术的最显着优势均表现为高度的设计通用性(由于基于流体的传动机构),用户感知到的可定制的刚度(通过调节内部流体压力获得)以及合适的电气安全性(通过与用户的被动接口和绝缘内部流体来启用)。毫米级的原型显示出约250 Hz的共振频率,代表Pacinian皮肤机械感受器表现出最大灵敏度时的值。这提供了最佳条件,可以最终组合或替代静态驱动来动态地对触觉信息进行编码。

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