基于海星管足结构的仿生触觉传感器OA
Bionic tactile sensor based on starfish tube foot structure
人工触觉感知传感器在机器人、医疗卫生、智能假肢及人机交互等领域具有重要应用价值.然而,现有传感器难以兼顾高灵敏度、优良线性响应与高空间分辨率,这已成为制约其实际应用的瓶颈.受海星管足系统的结构启发,本文设计并制备了一种多级圆顶结构触觉传感器,实现了高灵敏度、优异线性度、稳定性与高分辨率的同步提升.通过一系列实验,对该传感器的感知性能进行了全面、系统的表征与分析.实验结果表明,所构建的多级圆顶阵列结构在稳定保持高空间分辨率的同时,可有效拓展传感器的线性检测范围:其线性范围较单级圆顶结构提升约2倍,且实现了分段式灵敏响应.该传感器能够检测低至0.1 N的微弱外力,在0.1-3 N区间内灵敏度达1.309 V/N,在4-10 N区间内灵敏度为0.447 V/N,兼具高精度与大范围检测能力.通过呼吸监测、水滴检测、织物纹理识别及关节运动监测等多种实际应用场景测试,验证了该传感器在不同压力工况下均表现出优异的稳定性与检测精度,性能显著优于单圆顶结构传感器.研究结果表明,多级圆顶结构为解决触觉传感器灵敏度、线性度与分辨率难以兼顾的行业难题提供了有效策略.凭借综合优异的性能,该传感器在柔性电子、智能健康监测、人机交互及智能机器人等领域具有广阔应用前景.
Artificial tactile perception sensors have great application value in robotics,medical health,intelligent prosthetics,and human-computer interaction.However,existing sensors encounter difficulties in achieving high sensitivity,good linear response,and high spatial resolution,which has become a key problem restricting their practical application.Here,inspired by the tube foot system in starfish,we report the design,fabrication,and performance of a multi-level dome structure tactile sensor(MLDSTS)that provides simultaneous high sensitivity,excellent linearity,stability,and high resolution.Through a series of experiments,a comprehensive and systematic characterization and analysis of its sensing performance were conducted.The experimental results showed that the constructed multi-level dome array structure could effectively expand the linear detection range of the sensor while stably maintaining high spatial resolution.Its linear range was increased by about 2 times compared with the single-level dome structure,and realized segmented sensitive response.The sensor could detect weak external forces as low as 0.1 N,with a sensitivity of 1.309 V/N in the range of 0.1-3 N and 0.447 V/N in the range of 4-10 N,possessing both high precision and large-range detection capabilities.Through tests in various practical application scenarios such as respiration monitoring,water droplet detection,fabric texture recognition,and knuckle movement monitoring,it was confirmed that the sensor exhibited excellent stability and detection accuracy in different pressure scenarios,and its performance was significantly superior to that of single-dome structure sensors.The research results indicated that the multi-level dome structure provided an effective strategy to solve the industry problem that it was difficult to balance the sensitivity,linearity,and resolution of tactile sensors.With its comprehensively excellent performance,the MLDSTS sensor has broad application prospects in the fields of flexible electronics,intelligent health monitoring,human-computer interaction,and intelligent robots.
王嘉琪;杨晓鹏;王宇希;谭秋林
中北大学 微纳器件与系统教育部重点实验室,山西 太原 030051||中北大学 极限环境光电动态测试技术与仪器全国重点实验室,山西 太原 030051中北大学 微纳器件与系统教育部重点实验室,山西 太原 030051||中北大学 极限环境光电动态测试技术与仪器全国重点实验室,山西 太原 030051中北大学 微纳器件与系统教育部重点实验室,山西 太原 030051||中北大学 极限环境光电动态测试技术与仪器全国重点实验室,山西 太原 030051中北大学 微纳器件与系统教育部重点实验室,山西 太原 030051||中北大学 极限环境光电动态测试技术与仪器全国重点实验室,山西 太原 030051
触觉传感器压电响应圆顶结构聚偏氟乙烯(PVDF)柔性电子人机交互
tactile sensorpiezoelectric responsedome structurePVDFflexible electronicshuman-computer interaction
《测试科学与仪器》 2026 (2)
344-354,11
This work was supported by Shanxi Province Basic Research Program Project(No.202403021212163).
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