Double-sided Printed Tactile Display with Electro Stimuli and Electrostatic Forces and its Assessment

Double-sided Printed Tactile Display with Electro Stimuli and Electrostatic Forces and its Assessment
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DOI:
10.1145/3173574.3174024
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发表时间:
2018-04
期刊:
Proceedings of the 2018 CHI Conference on Human Factors in Computing Systems
影响因子:
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通讯作者:
Kunihiro Kato;H. Ishizuka;H. Kajimoto;Homei Miyashita
Kunihiro Kato;H. Ishizuka;H. Kajimoto;Homei Miyashita
中科院分区:
其他
文献类型:
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作者:
Kunihiro Kato;H. Ishizuka;H. Kajimoto;Homei Miyashita

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人类可以通过多模态刺激感知触觉。为了向用户展示逼真的伪触觉,需要能够提供多种触觉刺激的触觉显示器。在本文中,我们阐述了一种新型的印刷触觉显示器,可以提供电刺激和静电力。每个刺激的电路图案通过采用双面导电油墨印刷技术来制造。分析了制作工艺的要求,并对触觉显示器的耐久性进行了评价。使用者对单一触觉刺激和多个触觉刺激的感知也进行了研究。获得的实验结果表明,所提出的触觉显示能够表现出逼真的触觉,并且可以被各种应用(例如插图和绘画的触觉印刷)所结合。此外,所提出的混合触觉显示器可以有助于加速原型设计和开发新的触觉设备。
Humans can perceive tactile sensation through multimodal stimuli. To demonstrate realistic pseudo tactile sensation for the users, a tactile display is needed that can provide multiple tactile stimuli. In this paper, we have explicated a novel printed tactile display that can provide both the electrical stimulus and the electrostatic force. The circuit patterns for each stimulus were fabricated by employing the technique of double-sided conductive ink printing. Requirements for the fabrication process were analyzed and the durability of the tactile display was evaluated. Users' perceptions of a single tactile stimulus and multiple tactile stimuli were also investigated. The obtained experimental results indicate that the proposed tactile display is capable of exhibiting realistic tactile sensation and can be incorporated by various applications such as tactile sensation printing of pictorial illustrations and paintings. Furthermore, the proposed hybrid tactile display can contribute to accelerated prototyping and development of new tactile devices.