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首页> 外文期刊>Haptics, IEEE Transactions on >ShiverPaD: A Glass Haptic Surface That Produces Shear Force on a Bare Finger
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ShiverPaD: A Glass Haptic Surface That Produces Shear Force on a Bare Finger

机译:ShiverPaD:一种玻璃触觉表面,可在裸露的手指上产生剪切力

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We discuss the design and performance of a new haptic surface capable of controlling shear force on a bare finger. At the heart of the ShiverPaD is the TPaD variable friction device. It modulates the friction of a glass surface by using 39 kHz out-of-plane vibrations to reduce friction. To generate shear forces, the TPaD is oscillated in-plane (i.e., ȁC;shiveredȁD;) while alternating between low and high friction within each cycle. In previous research, the ShiverPaD produced shear forces using in-plane vibrations below 100 Hz. In this research, we develop a new ShiverPaD that produces force using 854 Hz vibrations, where human sensitivity to vibration is diminished. The new device is used to display a virtual toggle switch and a variety of virtual edges. A human subject study is conducted to demonstrate that users can easily trace virtual edges displayed on the surface of the ShiverPaD.
机译:我们讨论了能够控制裸手指上的剪切力的新型触觉表面的设计和性能。 ShiverPaD的核心是TPaD可变摩擦装置。它通过使用39 kHz的平面外振动来调节玻璃表面的摩擦,以减少摩擦。为了产生剪切力,TPaD在平面内振动(即ȁC;发抖的ȁD;),同时在每个循环中在低摩擦和高摩擦之间交替。在先前的研究中,ShiverPaD使用低于100 Hz的平面内振动产生剪切力。在这项研究中,我们开发了一种新的ShiverPaD,它通过854 Hz的振动产生力,从而降低了人类对振动的敏感度。新设备用于显示虚拟拨动开关和各种虚拟边缘。进行了一项人体研究,以证明用户可以轻松地跟踪ShiverPaD表面上显示的虚拟边缘。

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