Chai Jin, Wang Xin, Li Xuan, Wu Guirong, Zhao Yunlong, Nan Xueli, Xue Chenyang, Gao Libo, Zheng Gaofeng
Xiamen Zehuo Digital Technology Co., Ltd., Xiamen 361102, China.
School of Automation and Software Engineering, Shanxi University, Taiyuan 030006, China.
Micromachines (Basel). 2024 Jan 25;15(2):179. doi: 10.3390/mi15020179.
The emerging field of flexible tactile sensing systems, equipped with multi-physical tactile sensing capabilities, holds vast potential across diverse domains such as medical monitoring, robotics, and human-computer interaction. In response to the prevailing challenges associated with the limited integration and sensitivity of flexible tactile sensors, this paper introduces a versatile tactile sensing system capable of concurrently monitoring temperature and pressure. The temperature sensor employs carbon nanotube/graphene conductive paste as its sensitive material, while the pressure sensor integrates an ionic gel containing boron nitride as its sensitive layer. Through the application of cost-effective screen printing technology, we have successfully manufactured a flexible dual-mode sensor with exceptional performance, featuring high sensitivity (804.27 kPa-1), a broad response range (50 kPa), rapid response time (17 ms), and relaxation time (34 ms), alongside exceptional durability over 5000 cycles. Furthermore, the resistance temperature coefficient of the sensor within the temperature range of 12.5 °C to 93.7 °C is -0.17% °C. The designed flexible dual-mode tactile sensing system enables the real-time detection of pressure and temperature information, presenting an innovative approach to electronic skin with multi-physical tactile sensing capabilities.
具备多物理触觉传感能力的柔性触觉传感系统这一新兴领域,在医疗监测、机器人技术和人机交互等多个领域拥有巨大潜力。针对柔性触觉传感器集成度有限和灵敏度方面存在的普遍挑战,本文介绍了一种能够同时监测温度和压力的多功能触觉传感系统。温度传感器采用碳纳米管/石墨烯导电浆料作为其敏感材料,而压力传感器集成了含有氮化硼的离子凝胶作为其敏感层。通过应用具有成本效益的丝网印刷技术,我们成功制造出了一种性能卓越的柔性双模传感器,具有高灵敏度(804.27 kPa-1)、宽响应范围(50 kPa)、快速响应时间(17 ms)和弛豫时间(34 ms),以及超过5000次循环的出色耐久性。此外,该传感器在12.5°C至93.7°C温度范围内的电阻温度系数为-0.17%°C。所设计的柔性双模触觉传感系统能够实时检测压力和温度信息,为具备多物理触觉传感能力的电子皮肤提供了一种创新方法。