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- W2990616347 abstract "Fabrication of anisotropic piezoresistive materials is ultimately important for the realization of multi-loading recognization in robotics, auto-driving, artificial intelligence and health care, etc., whereas most of the existing production strategies are time-consuming and costly. Herein, we applied a simple structural design of carbonized cotton thread (CCT) to produce anisotropic piezoresistive CCT/silicone composites. Specifically, the rectangular wave shaped CCT/silicone composite (Re-CCT) and straight CCT/silicone composite (St-CCT), which exhibit distinct sensing performance to tension and compression, are fabricated. Their sensors’ gauge factor (GF) for tension and compression obeys: GFTen-St > GFCom-St ≈ GFCom-Re > GFTen-Re ≈ 0. Consequently, the flexible multifunctional anisotropic piezoresistive composite integrated with Re-CCT and St-CCT is able to distinguish multiple loading modes, including compression, tension and their combination, via monitoring the micro-deformation applied by a finger and the status of a bottle handled by a robotic hand. The current strategy shows a great promise in manufacturing flexible anisotropic piezoresistive composite sensors for robotics, auto-driving, artificial intelligence and health care applications, etc." @default.
- W2990616347 created "2019-12-05" @default.
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- W2990616347 date "2020-02-01" @default.
- W2990616347 modified "2023-10-16" @default.
- W2990616347 title "Architectural design of flexible anisotropic piezoresistive composite for multiple-loading recognization" @default.
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- W2990616347 doi "https://doi.org/10.1016/j.compositesb.2019.107631" @default.
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