Qiu Wenying, Li Zhaoyang, Wang Guocheng, Peng Yande, Zhang Min, Wang Xiaohao, Zhong Junwen, Lin Liwei
Tsinghua-Berkeley Shenzhen Institute, Tsinghua University, Shenzhen 518055, China.
Tsinghua Shenzhen International School, Tsinghua University, Shenzhen 518055, China.
ACS Appl Mater Interfaces. 2022 Jul 13;14(27):31257-31266. doi: 10.1021/acsami.2c06209. Epub 2022 Jul 1.
Strong and robust stimulations to human skins with low driving voltages under high moisture working conditions are desirable for wearable haptic feedback applications. Here, a soft actuator based on the "air bubble" electret structure is developed to work in high-moisture environments and produce haptic sensations to human skin with low driving voltages. Experimentally, the water soaking and drying process has been conducted repeatedly for the first time and the 20th time to test the antimoisture ability of the actuator as it recovers its output force up 90 and 65% of the initial value, respectively. The threshold voltages for sensible haptic sensations for the fingertip and palm of volunteers have been characterized as 7 and 10 V, respectively. Furthermore, a demonstration example has been designed and conducted in a virtual boxing game to generate the designated haptic sensations according to the gaming conditions with an accuracy of 98% for more than 100 tests. As such, the design principle, performance characteristic, and demonstration example in this work could inspire various applications with improved reliability for wearable haptic devices.
在高湿度工作条件下,以低驱动电压对人体皮肤进行强烈而有力的刺激,是可穿戴触觉反馈应用所期望的。在此,基于“气泡”驻极体结构开发了一种软致动器,用于在高湿度环境中工作,并以低驱动电压向人体皮肤产生触觉感受。通过实验,首次和第20次反复进行水浸泡和干燥过程,以测试致动器的防潮能力,因为它分别恢复到初始值的90%和65%的输出力。志愿者指尖和手掌产生明显触觉感受的阈值电压分别被表征为7伏和10伏。此外,还设计并在虚拟拳击游戏中进行了一个演示示例,以根据游戏条件产生指定的触觉感受,在100多次测试中准确率达到98%。因此,这项工作中的设计原理、性能特性和演示示例可以激发各种应用,提高可穿戴触觉设备的可靠性。