用纸和铝箔做低成本触觉压力传感器,可实现假肢手的精准触感反馈
Low-cost foil/paper based touch mode pressure sensing element as artificial skin module for prosthetic hand
- 用纸和铝箔通过手工制作柔性电容式压力传感器
- 在10-40kPa触觉模式下灵敏度更高、线性度更好,响应时间仅15.85毫秒
- 适合低预算假肢或机器人皮肤,结构坚固且温度漂移小
电容式压力传感器在机器人、自动化、航空航天、生物医学和消费电子等领域具有优势。本文提出一种基于手工制作(DIY)技术的超低成本、纸基、触觉模式、柔性电容式压力传感器元件,包括数学建模、有限元分析(FEA)、制备与实验表征。该传感器用于设计大面积电子皮肤,应用于低成本假肢手。传感器在正常(0-8 kPa)、过渡(8-10 kPa)、触觉(10-40 kPa)和饱和(>40 kPa)模式下进行了表征。在10-40 kPa触觉模式下,其灵敏度和线性度优于其他模式,响应时间为15.85毫秒。相比传统模式电容传感器,该传感器具有更高的灵敏度、线性响应、更小的隔膜面积、更小的夹持边缘区域冯·米塞斯应力、更低的温度漂移、更强的结构鲁棒性以及更大的压力测量范围。利用其线性压力响应范围,可通过无线通信控制伺服电机位置,实现机械臂的精确运动,适用于低成本假肢手的类皮肤结构设计。
原文摘要 · Abstract (English)
Capacitive pressure sensors have several advantages in areas such as robotics, automation, aerospace, biomedical and consumer electronics. We present mathematical modelling, finite element analysis (FEA), fabrication and experimental characterization of ultra-low cost and paper-based, touch-mode, flexible capacitive pressure sensor element using Do-It-Yourself (DIY) technology. The pressure sensing element is utilized to design large-area electronics skin for low-cost prosthetic hands. The presented sensor is characterized in normal, transition, touch and saturation modes. The sensor has higher sensitivity and linearity in touch mode operation from 10 to 40 kPa of applied pressure compared to the normal (0 to 8 kPa), transition (8 to 10 kPa) and saturation mode (after 40 kPa) with response time of 15.85 ms. Advantages of the presented sensor are higher sensitivity, linear response, less diaphragm area, less von Mises stress at the clamped edges region, low temperature drift, robust structure and less separation gap for large pressure measurement compared to normal mode capacitive pressure sensors. The linear range of pressure change is utilized for controlling the position of a servo motor for precise movement in robotic arm using wireless communication, which can be utilized for designing skin-like structure for low-cost prosthetic hands.
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