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Experimental evaluation of a miniature haptic actuator based on electrorheological fluid

机译:基于电流变流体的小型触觉致动器的实验评估

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Haptic feedback is desired for numerous applications including simulators, teleoperations, entertainment and more. While many devices today feature vibrotactile feedback, most do not provide kinesthetic feedback. To address the need for both vibrotactile and kinesthetic feedback, this study investigates the use of electrorheological (ER) fluids for their tunable viscosity under electrical stimulation. A prototype device containing ER fluid was designed and fabricated. The device operates based on pressure-driven flow of the fluid between charged plates due to user interaction with the touch contact surface. The prototype was tested using a dynamic mechanical analyzer to measure the actuator's resistive force with respect to indentation depth for a range of applied voltages and frequencies. The results indicate that increasing the applied voltage causes an increase in the force produced by the actuator. Varying the supplied signal over a range of voltages and frequencies can convey a range of force and vibrational feedback. This range is sufficient to transmit distinct haptic sensations to human operators and demonstrates the design's capability to transmit remote or virtual touch feedback conditions.
机译:触觉反馈对于包括模拟器,遥操作,娱乐等在内的许多应用都是期望的。尽管当今许多设备都具有触觉反馈,但大多数设备不提供动觉反馈。为了满足对触觉和动觉反馈的需求,本研究研究了在电刺激下使用电流变(ER)流体调节粘度的方法。设计并制造了包含ER流体的原型设备。由于用户与触摸接触表面的交互作用,该设备基于带电板之间的流体压力驱动的流量进行操作。使用动态机械分析仪对原型进行了测试,以测量致动器在一定电压和频率范围内相对于压痕深度的抵抗力。结果表明,增加施加的电压会导致执行器产生的力增加。在一定范围的电压和频率范围内改变所提供的信号可以传达一定范围的力和振动反馈。该范围足以将不同的触觉传递给操作员,并证明了设计能够传递远程或虚拟触摸反馈条件。

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