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通过界面设计工程实现的高度稳健且自粘的柔性应变计

Highly Robust and Self-Adhesive Soft Strain Gauge via Interface Design Engineering.

作者信息

Li Jianhao, Dai Qingqing, Wang Ze, Yi Yaozhen, Shen Yan, Yao Zhongwen, Niu Shichao, Han Zhiwu, Ren Luquan

机构信息

Key Laboratory of Bionic Engineering, Ministry of Education, Jilin University, Changchun, 130022, China.

Institute of Structured and Architected Materials, Liaoning Academy of Materials, Shenyang, 110167, China.

出版信息

Adv Mater. 2024 Sep;36(38):e2406432. doi: 10.1002/adma.202406432. Epub 2024 Jul 31.

Abstract

Highly robust soft strain gauges are rapidly emerging as a promising candidate in the fields of vital signs and machine conditions monitoring. However, it is still a key challenge to achieve high-performance strain sensing in these sensors with mechanical/electrical robustness for long-term usage. The multilayer structural design of sensors enhances sensing performance while the interfacial connection of heterogeneous materials between different layers is weak. Herein, inspired by the efficient perception mechanism of scorpion slit sensilla with tough interface interconnections, the synergy of ultra-high electrical performance and mechanical robustness is successfully achieved via interface design engineering. The developed multilayer soft strain gauge (MSSG) exhibits a strain sensitivity beyond 10, a lower detection limit of 8.3 µm, a frequency resolution within 0.1 Hz, and cyclic stability over 63 000 strain cycles. Also, the tough interface improves the level of heterogeneous integration in the MSSG which allows to endure different stresses. Furthermore, an MSSG-based wireless strain monitoring system is developed that enables applications on different complex dynamic surfaces, including accurate identification of human throat activity and monitoring of rolling bearing conditions.

摘要

高度稳健的柔性应变传感器正迅速成为生命体征和机器状态监测领域中一个有前景的候选方案。然而,要使这些传感器在长期使用中具备机械/电气稳健性的同时实现高性能应变传感,仍然是一项关键挑战。传感器的多层结构设计提升了传感性能,但不同层之间异质材料的界面连接较弱。在此,受具有坚固界面互连的蝎子缝感觉器高效感知机制的启发,通过界面设计工程成功实现了超高电气性能与机械稳健性的协同。所开发的多层柔性应变传感器(MSSG)表现出超过10的应变灵敏度、8.3 µm的较低检测限、0.1 Hz以内的频率分辨率以及超过63000次应变循环的循环稳定性。此外,坚固的界面提高了MSSG中的异质集成水平,使其能够承受不同应力。此外,还开发了一种基于MSSG的无线应变监测系统,该系统能够应用于不同的复杂动态表面,包括准确识别人类喉部活动和监测滚动轴承状态。

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