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1-D Collocated Dual-Gradient Sensory Fibers for Comprehensive Sensing and Decoding of Complex Human Motion and Physiology

8시간 전
1분 분량
논문그림의뢰/논문Figure업체/Figurelabs/논문그림AI/논문커버제작/TOC/논문그림업체/논문그림 의뢰

*****그래픽랩은 해당 이미지에서 빨간색 라인 표기 영역 이미지를 작업하였습니다. 논문 개요 파악을 위해 Figure 전체 세트로 유첨하였습니다.****





ABSTRACT

Wearable interfaces that capture both weak physiological fluctuations and large body motions remain difficult to realize in a single fiber because most strain-sensing fibers are governed by one dominant electromechanical response mode. Consequently, mechanically distinct deformation regimes are ambiguously represented, limiting sensing range and information quality for downstream motion interpretation. Here, we develop a monolithic dual-gradient fiber with complementary sensing regimes programmed through coupled materials and process design. By jointly tuning the percolation behavior and rheological drawability of carbon black/carbon nanotube-filled styrene–ethylene–butylene–styrene (SEBS) composites, we identified two formulations suitable for coaxial co-drawing within one continuous strand. The resulting fiber pairs a highly responsive layer for small deformation with a robust layer that stays informative at larger strain, producing synchronized but nonredundant signals. At low strain (0%–10%), the high-sensitivity layer exhibits a gauge factor of 51.28, over four times the low-sensitivity layer (12.42), while the two layers remain functional up to approximately 40% and 160% strain, respectively. This architecture preserves mechanically salient features across distinct and superimposed inputs, supporting measurements from pulse and respiration to joint motion. In a single-fiber glove, the dual-sensitivity design improves gesture-classification accuracy by more than 10% relative to single-sensitivity controls, enriching features for decoding.



 
 
 

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