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Wearable Tactile Display Based on Thermal Expansion of Nichrome Wire

机译:基于镍铬合金线热膨胀的可穿戴触觉显示器

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摘要

A wearable tactile display needs to be compact and lightweight, and ideally should be able to present vibration, force, and temperature information to the hand. In many contexts spatially distributed tactile information is needed such as when identifying the shape of objects. In this paper, a multi-element tactile display is described based on the thermal expansion and contraction of nichrome wire. The device comprises elastic rods that are pulled by nichrome wires (30 mm in diameter). When an electrical current is applied to the wire, displacement of the elastic rod occurs with thermal elongation of the wire. The wire cools quickly and vibration results. The nichrome wire that is the basis of this display overcomes many of the material restrictions associated with shape memory alloys that have often been used for thermally driven tactile displays. Experiments that characterized the performance of the tactile display indicated that perceptible vibrations up to 320 Hz can be presented. Psychophysical studies revealed that both position and movement cues can be displayed effectively with the device. A miniaturized version of this display for wearable applications has been built and undergone preliminary evaluation.
机译:可穿戴的触觉显示器需要紧凑,轻巧,并且理想情况下应该能够向手提供振动,力和温度信息。在许多情况下,例如在识别物体的形状时,需要空间分布的触觉信息。在本文中,基于镍铬合金线的热膨胀和收缩描述了一种多元素触觉显示器。该设备包括由镍铬合金线(直径30毫米)拉动的弹性杆。当电流施加到电线上时,随着电线的热伸长而发生弹性杆的位移。焊丝迅速冷却并产生振动。作为该显示器基础的镍铬合金丝克服了许多与形状记忆合金相关的材料限制,而形状记忆合金通常用于热驱动触觉显示器。表征触觉显示器性能的实验表明,可以呈现高达320 Hz的可感知振动。心理物理学研究表明,该设备可以有效显示位置和运动提示。这款显示器的可穿戴应用微型化版本已经过初步评估。

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