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杠杆机构增强隔膜式振动器的振动触觉强度。

Lever Mechanism for Diaphragm-Type Vibrators to Enhance Vibrotactile Intensity.

出版信息

IEEE Trans Haptics. 2024 Jan-Mar;17(1):20-25. doi: 10.1109/TOH.2024.3354253. Epub 2024 Mar 21.

Abstract

Thin and light vibrators that leverage the inverse piezoelectric effect with a diaphragm mechanism are promising vibrotactile actuators owing to their form factors and high temporal and frequency response. However, generating perceptually sufficient displacement in the low-frequency domain is challenging. This study presents a lever mechanism mounted on a diaphragm vibrator to enhance the vibrotactile intensity of low-frequency vibrotactile stimuli. The lever mechanism is inspired by the tactile contact lens consisting of an array of cylinders held against the skin on a sheet that enhances micro-bump tactile detection. We built an experimental apparatus including our previously developed thin-film diaphragm-type vibrator, which reproduced the common characteristic of piezoelectric vibrators: near-threshold displacement (10 to 20 μm) at low frequency. Experiments demonstrated enhanced vibrotactile intensity at frequencies less than 100 Hz with the lever mechanism. Although the arrangement and material of the mechanism can be improved, our findings can help improve the expressiveness of diaphragm-type vibrators.

摘要

利用逆压电效应和隔膜机构的薄而轻的振动器是有前途的振动触觉致动器,因为它们的形状因数和高的时间和频率响应。然而,在低频域中产生可感知的足够的位移是具有挑战性的。本研究提出了一种安装在隔膜振动器上的杠杆机构,以增强低频振动触觉刺激的振动触觉强度。该杠杆机构的灵感来自于触觉隐形眼镜,它由一组圆柱体组成,这些圆柱体被压在薄片上的皮肤上,以增强微凸触觉检测。我们构建了一个实验装置,包括我们之前开发的薄膜隔膜式振动器,该振动器再现了压电振动器的常见特性:低频时接近阈值的位移(10 到 20μm)。实验表明,在低于 100Hz 的频率下,杠杆机构增强了振动触觉强度。虽然可以改进机构的布置和材料,但我们的发现可以帮助提高隔膜式振动器的表达能力。

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