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Design analysis and fabrication of arrayed tactile display based on dielectric elastomer actuator

机译:基于介电弹性体致动器的阵列式触觉显示器的设计分析与制造

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摘要

The tactile display is an important tool to help the human interact with machines by using feels of touch. In this paper, we present a multiply arrayed tactile display device with Dielectric Elastomer Actuator (DEA). The device employs the liquid coupling between the touch spot and the actuator as the transmission of force. It is designed to ensure the comfort of touch and the safety of operation for the users while contacting with the human skin. The operating principle is explained in details, and a systematic design analysis is given. The displacements of tactile display is about 240-120 μm at 3-10 Hz, which satisfies the frequency requirements for simulating the Merkel cells as well as the Meissner corpuscles and the force is over 40 mN to simulate the finger tip. In addition, a dedicated fabrication method and performance measurements are explained.
机译:触觉显示器是一种重要的工具,可通过触摸来帮助人们与机器交互。在本文中,我们提出了带有介电弹性体致动器(DEA)的多阵列触觉显示设备。该设备将触摸点和执行器之间的液体耦合用作力的传递。它旨在确保用户与人体皮肤接触时的触摸舒适性和操作安全性。详细说明了工作原理,并进行了系统的设计分析。在3-10 Hz时,触觉显示器的位移约为240-120μm,这满足了模拟默克尔细胞以及Meissner小体的频率要求,并且力超过40 mN以模拟指尖。另外,解释了专用的制造方法和性能测量。

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