A Novel Strategy to Control the Effective Strain Range for Yarn-Based Resistive Strain Sensor by Braiding Technology

IF 2.2 4区 工程技术 Q1 MATERIALS SCIENCE, TEXTILES Fibers and Polymers Pub Date : 2024-12-20 DOI:10.1007/s12221-024-00821-z
Fei Huang, Chen Huang, Fenye Meng, Kean Chin Aw, Xiong Yan, Jiyong Hu
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Abstract

Yarn-based strain sensors are breaking the boundaries between flexible wearable electronics and smart clothing due to their unique functionality and weavability. The sensing strain range of most flexible strain sensors is less than its tensile range, and it is easy to exceed its sensing strain range during use, resulting in unstable performance and failure of the sensor. An effective-strain-range-controllable and wear-resistant yarn strain sensor was developed with a core-sheath braided structure with the sensing yarn as the core and the braided yarn as the shell. This design strain allows for control over the effective strain range by adjusting the core sensing yarn’s pre-stretch ratio and the outer braided layer’s structure. This prevents damage to the conductive network and sensor failure caused by excessive stretching during use. The sensitivity, linear sensing range, and hysteresis of the braided strain sensors are effectively adjusted by changing the braiding yarns’ braiding angle and the sensing yarn’s pre-stretch ratio. Additionally, the sensors’ appearance and texture can be customized by changing the colour and material of the braiding yarns, allowing these sensors to integrate seamlessly with the garment and enhance their aesthetics. Furthermore, when combined with elastic fabric bands, these sensors can be attached to various parts of the human body to monitor physiological information, such as respiration and movement. The braided structure design presents a versatile strategy that could be applied to other types of strain sensors, achieving stability, durability, and aesthetics simultaneously.

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基于编织技术的纱线电阻式应变传感器有效应变范围控制策略
基于纱线的应变传感器由于其独特的功能和可织性,正在打破柔性可穿戴电子产品和智能服装之间的界限。大多数柔性应变传感器的传感应变范围小于其拉伸范围,并且在使用过程中很容易超过其传感应变范围,导致传感器性能不稳定,出现故障。以传感纱为芯,编织纱为壳,研制了一种有效应变范围可控、耐磨的纱线应变传感器。这种设计应变允许通过调整芯感纱的预拉伸比和外层编织层的结构来控制有效应变范围。这可以防止在使用过程中因过度拉伸而损坏导电网络和传感器故障。通过改变编织纱线的编织角度和传感纱线的预拉伸比,有效地调节了编织应变传感器的灵敏度、线性传感范围和滞后量。此外,传感器的外观和质地可以通过改变编织纱线的颜色和材料来定制,从而使这些传感器与服装无缝集成,并增强其美观性。此外,当与弹性织物带结合在一起时,这些传感器可以附着在人体的各个部位,以监测呼吸和运动等生理信息。编织结构设计提供了一种通用的策略,可以应用于其他类型的应变传感器,同时实现稳定性,耐用性和美观性。
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来源期刊
Fibers and Polymers
Fibers and Polymers 工程技术-材料科学:纺织
CiteScore
3.90
自引率
8.00%
发文量
267
审稿时长
3.9 months
期刊介绍: -Chemistry of Fiber Materials, Polymer Reactions and Synthesis- Physical Properties of Fibers, Polymer Blends and Composites- Fiber Spinning and Textile Processing, Polymer Physics, Morphology- Colorants and Dyeing, Polymer Analysis and Characterization- Chemical Aftertreatment of Textiles, Polymer Processing and Rheology- Textile and Apparel Science, Functional Polymers
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