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Investigation of tactile bump array actuated with ionic polymer-metal composite cantilever beams for refreshable braille display application

机译:用离子聚合物 - 金属复合悬臂梁致动触觉凸块阵列,可刷新的易碎盲文显示应用

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This paper presents an innovative digitally controllable tactile bump array driven with ionic polymer metal composite (IPMC) actuators for a refreshable braille display application. The array with 5 x 5 PDMS bump elements was implemented in front of the IPMC cantilever beams as the contact interfaces of fingertips and IPMC actuators. The designed circuit allows to access every single element through unique wire-pair selection so that the actuated electrical signal could directly apply to both electrodes of the IPMC cantilever beam. A soft and thin PDMS layer was realized underneath the IPMC cantilever beams to maintain the level while the IPMC actuators loaded with the bumps in the non-actuation state and to minimize the liquid evaporation containing in the IPMC actuator. The fabricated actuator array is qualitatively tested to ensure that the fingertip can properly feel the force variation when the bump is driven by the IPMC actuator. The displacements of the bumps with different weights under the same driving condition of the IPMC actuators is also measured. A novel method of using the experimental results for in-situ characterization of the Young's modulus of the IPMC cantilever beam during its operation is developed. This scheme can be employed in the situation in which the cantilever beam is subjected to an unknown external force during its partial motion cycle. The results show that a maximum moment variation of 1.6 mu N m can be generated for the fabricated 3 mm x 0.8 mm x 0.2 mm IPMC cantilever beam under an 8-V square wave actuation for 1 s. The maximum blocked forces at the bump surfaces reach 0.68 mN and 0.55 mN for the bumps of masses 4.1 mg and 15.5 mg, respectively. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文介绍了一种采用离子聚合物金属复合物(IPMC)致动器驱动的创新的数字可控触觉凸块阵列,用于可刷新的盲文显示器。具有5×5PDMS凸块元件的阵列在IPMC悬臂梁的前面实现,作为指尖和IPMC执行器的接触接口。设计电路允许通过唯一的线对选择来访问每个元件,使得致动电信号可以直接适用于IPMC悬臂梁的两个电极。在IPMC悬臂梁下方实现了柔软和薄的PDMS层,以保持水平,而IPMC致动器装载在非致动状态下的凸块并最小化包含IPMC致动器中的液体蒸发。制造的致动器阵列被定性地测试,以确保指尖可以在由IPMC致动器驱动时适当地感受力变化。还测量了在相同的IPMC致动器的驾驶条件下具有不同权重的凸块的位移。开发了一种使用实验结果的新方法,以便在其操作期间的杨氏模量的原位表征。该方案可以在悬臂梁在其部分运动周期期间经历未知的外力的情况。结果表明,在8V方波致动下,可以为制造的3mm×0.8mm×0.2mm IPMC悬臂梁产生1.6μmn m的最大片段变化。凸块表面的最大阻挡力分别达到0.68mN和0.55mN的肿块4.1mg和15.5mg。 (c)2018年elestvier b.v.保留所有权利。

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