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Stretchable and Highly Sensitive Optical Strain Sensors for Human-Activity Monitoring and Healthcare.用于人体活动监测和医疗保健的可拉伸且高灵敏光学应变传感器。
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Dual-Core Capacitive Microfiber Sensor for Smart Textile Applications.双核电容式微纤维传感器用于智能纺织品应用。
ACS Appl Mater Interfaces. 2019 Sep 11;11(36):33347-33355. doi: 10.1021/acsami.9b10937. Epub 2019 Aug 27.
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Highly stretchable multi-walled carbon nanotube/thermoplastic polyurethane composite fibers for ultrasensitive, wearable strain sensors.高拉伸性多壁碳纳米管/热塑性聚氨酯复合纤维,用于超灵敏、可穿戴应变传感器。
Nanoscale. 2019 Mar 28;11(13):5884-5890. doi: 10.1039/c9nr01005j.
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Ultrasensitive Strain Sensor Based on Separation of Overlapped Carbon Nanotubes.基于重叠碳纳米管分离的超高灵敏应变传感器。
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An ultra-stretchable, highly sensitive and biocompatible capacitive strain sensor from an ionic nanocomposite for on-skin monitoring.一种基于离子纳米复合材料的超拉伸、高灵敏、生物兼容的电容应变传感器,可用于皮肤监测。
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具有快速响应和低滞后的基于纤维的微型应变传感器。

Fiber-based Miniature Strain Sensor with Fast Response and Low Hysteresis.

作者信息

Wang Ruixuan, Qiu Tong, Zhang Yujing, Rein Michael, Stolyarov Alexander, Zhang Junru, Seidel Gary D, Johnson Blake N, Wang Anbo, Jia Xiaoting

机构信息

Bradley Department of Electrical and Computer Engineering, Virginia Tech, Blacksburg, VA, 24061, USA.

Advanced Functional Fabrics of America, Cambridge, MA, 02139, USA.

出版信息

Adv Funct Mater. 2024 Oct 1;34(40). doi: 10.1002/adfm.202403918. Epub 2024 Jun 2.

DOI:10.1002/adfm.202403918
PMID:39712653
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11661685/
Abstract

Flexible and stretchable strain sensors are in high demand in sports performance monitoring, structural health monitoring, and biomedical applications. However, existing stretchable soft sensors, primarily based on soft polymer materials, often suffer from drawbacks, including high hysteresis, low durability, and delayed response. To overcome these limitations, we introduced a stretchable miniature fiber sensor comprised of a stretchable core tightly coiled with parallel conductive wires. This fiber sensor is flexible and stretchable while exhibiting low hysteresis, a remarkable theoretical resolution of 0.015%, a response time of less than 30 milliseconds, and excellent stability after extensive cycling tests of over 16,000 cycles. To understand and predict the capacitive sensor response of the proposed sensor, an analytical expression was derived and proved to have good agreements with both experimental results and numerical simulation. The potential of the strain sensor as a wearable device is demonstrated by embedding it into belts, gloves, and knee protectors. Additionally, the sensor could extend its applications beyond wearable devices, as demonstrated by its integration into bladder and life safety rope monitoring systems. We envision our sensor can find applications in the field of sports performance evaluations, health care monitoring, and structural safety assessments.

摘要

柔性可拉伸应变传感器在运动表现监测、结构健康监测和生物医学应用中需求很高。然而,现有的可拉伸软传感器主要基于软聚合物材料,常常存在一些缺点,包括高滞后性、低耐久性和响应延迟。为了克服这些限制,我们引入了一种可拉伸微型光纤传感器,它由与平行导线紧密缠绕的可拉伸芯组成。这种光纤传感器既灵活又可拉伸,同时具有低滞后性、0.015%的卓越理论分辨率、小于30毫秒的响应时间以及在超过16000次循环的广泛循环测试后具有出色的稳定性。为了理解和预测所提出传感器的电容式传感器响应,推导了一个解析表达式,并证明它与实验结果和数值模拟都有很好的一致性。通过将应变传感器嵌入腰带、手套和护膝中,展示了其作为可穿戴设备的潜力。此外,正如将其集成到膀胱和生命安全绳监测系统中所展示的那样,该传感器的应用可以扩展到可穿戴设备之外。我们设想我们的传感器能够在运动表现评估、医疗保健监测和结构安全评估领域找到应用。