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Fingerpad contact evolution under electrovibration

机译:电透下的指针接触进化

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摘要

Displaying tactile feedback through a touchscreen via electrovibration has many potential applications in mobile devices, consumer electronics, home appliances and automotive industry though our knowledge and understanding of the underlying contact mechanics are very limited. An experimental study was conducted to investigate the contact evolution between the human finger and a touch screen under electrovibration using a robotic set-up and an imaging system. The results show that the effect of electrovibration is only present during full slip but not before slip. Hence, the coefficient of friction increases under electrovibration as expected during full slip, but the apparent contact area is significantly smaller during full slip when compared to that of no electrovibration condition. It is suggested that the main cause of the increase in friction during full slip is due to an increase in the real contact area and the reduction in apparent area is due to stiffening of the finger skin in the tangential direction.
机译:通过触摸屏显示触觉反馈通过电枢纽在移动设备,消费电子,家电和汽车工业中具有许多潜在的应用,虽然我们的知识和对潜在的接触机构非常有限。进行了一种实验研究,以研究使用机器人设置和成像系统在电枢密下的人体手指和触摸屏之间的接触进化。结果表明,电电伸长的效果仅在全闸期间存在但不在滑动前存在。因此,在全滑动期间,摩擦系数在电枢密下增加,但是在与无电义条件的情况相比时,在全滑动期间明显较小。建议在全滑动期间摩擦增加的主要原因是由于实际接触面积的增加,表观面积的减少是由于指状皮肤在切线方向上的加强。

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