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Development of a Fully Flexible Sheet-Type Tactile Display Based on Electrovibration Stimulus

机译:基于电振动刺激的全柔性片状触觉显示器的研制

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摘要

Tactile displays have been extensively studied for several decades. However, owing to their bulkiness and stiffness, it has been difficult to integrate these displays with information devices to enable tactile communication between the devices and their users. This paper proposes a novel sheet-type electrovibration tactile display that consists of poly(3,4-ethylenedioxythiophene) polystyrene sulfonate conductive layers and an insulation layer of polydimethylsiloxane. The tactile display is sufficiently thin and flexible for attaching onto various surfaces. In this study, the tactile display was micro-fabricated and characterized through experiments. The experimental results indicated that the tactile display exhibited good durability under bending and that it could present various tactile sensations depending on the type of voltage waveform. In addition, the effect of using a combination of electrovibration and thermal stimuli was also demonstrated. The sheet-type display was attached onto a Peltier element; the thinness of the structure enabled the display to conform to the element and ensure good heat transfer. In the experiment, subjects were asked to scan the display with their fingertips. The results showed that multiple tactile stimuli were also successfully perceived by the subjects.
机译:触觉显示器已经被广泛研究了几十年。但是,由于它们的体积和刚度,很难将这些显示器与信息设备集成在一起以实现设备与其用户之间的触觉通信。本文提出了一种新型的片式电振动触觉显示器,该显示器由聚(3,4-乙撑二氧噻吩)聚苯乙烯磺酸盐导电层和聚二甲基硅氧烷绝缘层组成。触觉显示器足够薄且具有挠性,可以附着在各种表面上。在这项研究中,通过实验对触觉显示器进行了微细加工和表征。实验结果表明,该触觉显示器在弯曲下显示出良好的耐久性,并且根据电压波形的类型,其可以呈现各种触感。另外,还证明了结合使用电振动和热刺激的效果。平板显示器安装在珀耳帖元件上;结构的薄度使显示器能够顺应元素并确保良好的热传递。在实验中,要求受试者用指尖扫描显示器。结果表明,受试者也成功地感知到多种触觉刺激。

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