Lin Weikang, Wang Biao, Peng Guoxiang, Shan Yao, Hu Hong, Yang Zhengbao
Department of Mechanical Engineering City University of Hong Kong Tat Chee Avenue Kowloon Hong Kong China.
School of Mechanical Engineering and Automation Harbin Institute of Technology Shenzhen 518055 China.
Adv Sci (Weinh). 2021 Jan 6;8(3):2002817. doi: 10.1002/advs.202002817. eCollection 2021 Feb.
Real-time detection and differentiation of diverse external stimuli with one tactile senor remains a huge challenge and largely restricts the development of electronic skins. Although different sensors have been described based on piezoresistivity, capacitance, and triboelectricity, and these devices are promising for tactile systems, there are few, if any, piezoelectric sensors to be able to distinguish diverse stimuli in real time. Here, a human skin-inspired piezoelectric tactile sensor array constructed with a multilayer structure and row+column electrodes is reported. Integrated with a signal processor and a logical algorithm, the tactile sensor array achieves to sense and distinguish the magnitude, positions, and modes of diverse external stimuli, including gentle slipping, touching, and bending, in real time. Besides, the unique design overcomes the crosstalk issues existing in other sensors. Pressure sensing and bending sensing tests show that the proposed tactile sensor array possesses the characteristics of high sensitivity (7.7 mV kPa), long-term durability (80 000 cycles), and rapid response time (10 ms) (less than human skin). The tactile sensor array also shows a superior scalability and ease of massive fabrication. Its ability of real-time detection and differentiation of diverse stimuli for health monitoring, detection of animal movements, and robots is demonstrated.
利用一个触觉传感器对多种外部刺激进行实时检测和区分仍然是一项巨大的挑战,并且在很大程度上限制了电子皮肤的发展。尽管已经报道了基于压阻、电容和摩擦电的不同传感器,并且这些器件在触觉系统方面很有前景,但几乎没有能够实时区分多种刺激的压电传感器。在此,报道了一种受人类皮肤启发、采用多层结构和行 + 列电极构建的压电触觉传感器阵列。与信号处理器和逻辑算法集成后,该触觉传感器阵列能够实时感知和区分多种外部刺激的大小、位置和模式,包括轻微滑动、触摸和弯曲。此外,独特的设计克服了其他传感器中存在的串扰问题。压力传感和弯曲传感测试表明,所提出的触觉传感器阵列具有高灵敏度(7.7 mV kPa)、长期耐用性(80000 次循环)和快速响应时间(10 ms)(比人类皮肤还短)的特性。该触觉传感器阵列还具有卓越的可扩展性和易于大规模制造的特点。展示了其对多种刺激进行实时检测和区分以用于健康监测、动物运动检测和机器人的能力。