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Seesaw Type Actuator for Haptic Application

机译:透析应用跷跷板型执行器

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In this study, we propose a seesaw type actuator, and we investigate its actuation to determine the most efficient structure. When a high voltage input is applied between the L-shaped actuator and metal plate at the bottom substrate, another panel rises due to reaction of the electrostatic attraction. And it leads to tactile stimulation. In addition, we add a round cap to the edge of the panel of the actuator for more effective stimulation delivery. Various types of actuators experiments showed that the actuator with the largest radius of motion was an actuator with a narrow angle and a long length, and the axis of rotation coincided with the axis of gravity. This is because narrower angles between actuators increase the movable radius of motion and longer actuators can induce electrostatic attraction of larger forces and lose balance if the center of gravity axis does not match. Both gravity and electrostatic attraction are utilized for the operation of the actuator, and this actuator generates strong tactile stimulation without the risk of electric shock to users by separating the user contact part from the electrostatic force region. We expect that this new actuation mechanism is adapted to various haptic devices in the future to help the human-computer interaction.
机译:在这项研究中,我们提出了一个跷跷板型执行器,我们调查其致动以确定最有效的结构。当在底部基板的L形致动器和金属板之间施加高电压输入时,另一面板由于静电吸引的反应而上升。它导致触觉刺激。此外,我们在执行器的面板的边缘中添加圆盖,以获得更有效的刺激递送。各种类型的执行器实验表明,具有最大运动半径的致动器是具有窄角度和长度的致动器,并且旋转轴与重力轴线相一致。这是因为致动器之间的窄角度增加动作半径和较长的致动器可以引起较大力的静电吸引,并且如果重心轴不匹配​​,则失去平衡。重力和静电吸引被用于致动器的操作,并且该致动器通过将用户接触部分与静电力区域分离而没有对用户的风险产生强烈的触觉刺激。我们预期,这种新的致动机制适用于未来各种触觉设备,以帮助人机交互。

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