School of Mechanical Engineering , Chung-Ang University , 84 Heukseok-Ro , Dongjak-Gu, Seoul 06974 , Republic of Korea.
ARKEMA-Piezotech, Arkema-CRRA , Rue Henri Moissan , 69493 Pierre-Benite Cedex, France.
ACS Appl Mater Interfaces. 2019 Sep 11;11(36):33292-33301. doi: 10.1021/acsami.9b09691. Epub 2019 Aug 27.
Tactile perception in large-area displays is currently attracting substantial research attention since, in conjunction with visible and auditory sensations, it provides more immersive and realistic interactions with displayed contents. Here, a new vibrotactile display based on the fretting phenomenon is developed for the first time to provide localized tactile feedback on a large-area display. Normal pressure by a human fingertip activates a locally concentrated electric field in a relaxor ferroelectric polymer (RFP) film under the contact area, which produces a localized electrostrictive strain. The synergistic interplay among the localized electric field, electrostrictive deformation of the RFP film, and contact area dramatically amplifies acoustic vibrations near the contact edge of a human fingertip. A blend of poly(vinylidene fluoride-trifluoroethylene-chlorofluoroethylene) terpolymer and poly(vinylidene fluoride-trifluoroethylene) (55:45) copolymer is proposed for the RFP to provide an enhanced actuation performance even at elevated temperatures. The fretting-vibrotactile mechanism has several interesting properties, such as tactile feedback on a stationary fingertip, pressure-responsive simple on-off mechanism, multitouch interaction, excellent transparency, and easy integration with capacitive or resistive touch sensors and friction-based haptic-feedback mechanisms. An array of RFP film vibrators can provide addressable content-related multiple tactile feedback on large-area displays by modulating the frequency, amplitude, and profile of the driving voltage signals.
目前,大面积显示中的触觉感知引起了广泛的研究关注,因为它与可见和听觉感觉相结合,为与显示内容的交互提供了更具沉浸感和现实感的体验。在这里,首次开发了一种基于摩擦现象的新型触觉显示,以在大面积显示上提供局部触觉反馈。在接触区域下,人指尖的正常压力会在弛豫铁电聚合物(RFP)薄膜中产生局部集中的电场,从而产生局部电致伸缩应变。局部电场、RFP 薄膜的电致伸缩变形和接触区域之间的协同相互作用会显著放大人指尖接触边缘附近的声振动。提出了一种聚(偏二氟乙烯-三氟乙烯-氯氟乙烯)三元共聚物和聚(偏二氟乙烯-三氟乙烯)(55:45)共聚物的混合物作为 RFP,即使在高温下也能提供增强的致动性能。摩擦振动触觉机制具有一些有趣的特性,例如在静止指尖上的触觉反馈、压力响应的简单开/关机制、多点触摸交互、出色的透明度以及与电容式或电阻式触摸传感器和基于摩擦的触觉反馈机制的轻松集成。RFP 薄膜振动器阵列可以通过调制驱动电压信号的频率、幅度和形状,为大面积显示器提供与内容相关的可寻址多个触觉反馈。