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一种新型力感智能纺织品:将硅胶嵌入式光纤布拉格光栅传感器嵌入针织内衣中。

A Novel Force-Sensing Smart Textile: Inserting Silicone-Embedded FBG Sensors into a Knitted Undergarment.

机构信息

School of Fashion and Textile, The Hong Kong Polytechnic University, Hong Kong 999077, China.

Photonics Research Institute, The Hong Kong Polytechnic University, Hong Kong 999077, China.

出版信息

Sensors (Basel). 2023 May 28;23(11):5145. doi: 10.3390/s23115145.

Abstract

A number of textile-based fiber optic sensors have recently been proposed for the continuous monitoring of vital signs. However, some of these sensors are likely unsuitable for conducting direct measurements on the torso as they lack elasticity and are inconvenient. This project provides a novel method for creating a force-sensing smart textile by inlaying four silicone-embedded fiber Bragg grating sensors into a knitted undergarment. The applied force was determined within 3 N after transferring the Bragg wavelength. The results show that the sensors embedded in the silicone membranes achieved enhanced sensitivity to force, as well as flexibility and softness. Additionally, by assessing the degree of FBG response to a range of standardized forces, the linearity (R) between the shift in the Bragg wavelength and force was found to be above 0.95, with an ICC of 0.97, when tested on a soft surface. Furthermore, the real-time data acquisition could facilitate the adjustment and monitoring of force during the fitting processes, such as in bracing treatment for adolescent idiopathic scoliosis patients. Nevertheless, the optimal bracing pressure has not yet been standardized. This proposed method could help orthotists to adjust the tightness of brace straps and the location of padding in a more scientific and straightforward way. The output of this project could be further extended to determine ideal bracing pressure levels.

摘要

最近已经提出了许多基于纺织的光纤传感器来连续监测生命体征。然而,由于这些传感器缺乏弹性且不方便,其中一些传感器可能不适合直接在躯干上进行测量。本项目提供了一种通过将四个硅嵌入光纤布拉格光栅传感器嵌入针织内衣来创建力感测智能纺织品的新方法。在转移布拉格波长后,在 3N 内确定了所施加的力。结果表明,嵌入在硅膜中的传感器对力具有更高的灵敏度,以及更好的柔韧性和柔软度。此外,通过评估 FBG 对一系列标准化力的响应程度,发现当在柔软表面上测试时,布拉格波长位移与力之间的线性度 (R) 高于 0.95,ICC 为 0.97。此外,实时数据采集可以方便在拟合过程中调整和监测力,例如在青少年特发性脊柱侧凸患者的支具治疗中。然而,最佳的支具压力尚未标准化。这种提出的方法可以帮助矫形师以更科学和直接的方式调整支具带的紧度和衬垫的位置。该项目的结果可以进一步扩展到确定理想的支具压力水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3eee/10255815/dc9d1e71085d/sensors-23-05145-g001.jpg

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