材料科学
导电体
电磁感应
电动势
压力传感器
电压
机械能
智能材料
能量收集
约束(计算机辅助设计)
执行机构
软件部署
电气工程
机械工程
计算机科学
变形(气象学)
导电的
柔性电子器件
复合数
纳米技术
磁性
磁场
光电子学
作者
Jieyao Qin,Zhuan Fu,Xinyu Wang,Junyao Gong,Ke Lin,Qiang Zeng,Ji Hua,Liangjun Xia,Weilin Xu
标识
DOI:10.1002/adfm.202522295
摘要
Abstract Wearable flexible magnetoelectric sensing converts mechanical energy into electrical signals, offering advantages such as high stability and strong moisture resistance. However, most existing sensors integrate conductive wires with flexible magnetic materials, requiring simultaneous deformation to induce electromotive force. This mutual constraint limits their applicability. To address this challenge, a flexible magnetoelectric pressure sensor is developed based on three‐dimensional spacer fabric. By flexibly linking conductive coils with NdFeB/Ecoflex magnetic materials in a non‐embedded manner, it achieves a sandwich structure design, enabling deployment on complex surfaces. The sensor exhibits a maximum output voltage of 319 µV and can endure up to 50 000 fatigue cycles. In application‐oriented experiments, it demonstrated potential for multifunctional use, including steering wheel grip detection, smart insoles, seat cushions, backrest pads, and object weight measurement. Given its functionality, this design is expected to advance the development of flexible sensing technology and demonstrates potential for multifunctional applications in areas such as smart wearables, human–machine interaction, and data collection.
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