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Enhanced Design of a Soft Thin-Film Vibrotactile Actuator Based on PVC Gel

机译:基于PVC凝胶的软薄膜触觉致动器的改进设计

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We fabricated a soft thin-film vibrotactile actuator, which can be easily inserted into wearable devices, based on an electroactive PVC gel. One of the most important factors in fabricating a soft and thin vibrotactile actuator is to create vibrational force strong enough to stimulate human skin in a wide frequency range. To achieve this, we investigate the working principle of the PVC gel and suggest a new structure in which most of electric energy contributes to the deformation of the PVC gel. Due to this structure, the vibrational amplitude of the proposed PVC gel actuator could considerably increase (0.816 g (g = 9.8 m/s 2 ) at resonant frequency). The vibrotactile amplitude is proportional to the amount of input voltage. It increased from 0.05 g up to 0.416 g with increasing applied voltages from 200 V to 1 kV at 1 Hz. The experimental results show that the proposed actuator can create a variety of haptic sensations.
机译:我们基于电活性PVC凝胶制造了柔软的薄膜触感促动器,可以轻松将其插入可穿戴设备中。制造柔软且薄的触觉致动器的最重要因素之一是产生足以在宽频率范围内刺激人体皮肤的振动力。为此,我们研究了PVC凝胶的工作原理,并提出了一种新的结构,其中大部分电能有助于PVC凝胶的变形。由于这种结构,所提出的PVC凝胶致动器的振动幅度可能会大大增加(在共振频率下为0.816 g(g = 9.8 m / s 2))。触觉振幅与输入电压的大小成正比。随着施加电压从200 V增加到1 kV在1 Hz下,它从0.05 g增加到0.416 g。实验结果表明,所提出的执行器可以产生多种触觉。

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