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Towards development of nanofibrous large strain flexible strain sensors with programmable shape memory properties

机译:以可编程形状记忆特性开发纳米纤维大应变柔性应变传感器

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Electrospun polymeric fibers can be used as strain sensors due to their large surface to weight/volume ratio, high porosity and pore interconnectivity. Large strain flexible strain sensors are used in numerous applications including rehabilitation, health monitoring, and sports performance monitoring where large strain detection should be accommodated by the sensor. This has boosted the demand for a stretchable, flexible and highly sensitive sensor able to detect a wide range of mechanically induced deformations. Herein, a physically cross-linked polylactic acid (PLA) and thermoplastic polyurethane (TPU) blend is made into nanofiber networks via electrospinning. The PLA/TPU weight ratio is optimized to obtain a maximum attainable strain of 100% while maintaining its mechanical integrity. The TPU/PLA fibers also allowed for their thermally activated recovery due to shape memory properties of the substrate. This novel feature enhances the sensor's performance as it is no longer limited by its plastic deformation. Using spray coating method, a homogeneous layer of single-walled carbon nanotube is deposited onto the as-spun fiber mat to induce electrical conductivity to the surface of the fibers. It is shown that stretching and bending the sensor result in a highly sensitive and linear response with a maximum gauge factor of 33.
机译:由于其大表面重量/体积比,高孔隙率和孔隙互连,电纺织化合物聚合物纤维可用作菌株传感器。大型应变柔性应变传感器用于许多应用,包括康复,健康监测和运动性能监测,其中传感器应容纳大应变检测。这提高了对能够检测到各种机械诱导的变形的可拉伸,柔性和高度敏感的传感器的需求。这里,通过静电纺丝将物理交联的聚乳酸(PLA)和热塑性聚氨酯(TPU)混合物制成纳米纤维网络。 PLA / TPU重量比优化,可获得100%的最大可达到的应变,同时保持其机械完整性。由于基板的形状记忆特性,TPU / PLA纤维也允许其热激活的恢复。这种新颖的特性提高了传感器的性能,因为它不再受其塑性变形的限制。使用喷涂方法,将单壁碳纳米管的均匀层沉积在AS-Spix纤维垫上,以引起纤维表面的导电性。结果表明,延伸和弯曲传感器导致高敏感和线性响应,最大规格系数为33。

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