Institute of Materials, École polytechnique fédérale de Lausanne, Lausanne, 1015, Switzerland.
Adv Sci (Weinh). 2023 May;10(13):e2207573. doi: 10.1002/advs.202207573. Epub 2023 Feb 28.
Stretchable and conductive nanocomposites are emerging as important constituents of soft mechanical sensors for health monitoring, human-machine interactions, and soft robotics. However, tuning the materials' properties and sensor structures to the targeted mode and range of mechanical stimulation is limited by current fabrication approaches, particularly in scalable polymer melt techniques. Here, thermoplastic elastomer-based nanocomposites are engineered and novel rheological requirements are proposed for their compatibility with fiber processing technologies, yielding meters-long, soft, and highly versatile stretchable fiber devices. Based on microstructural changes in the nanofiller arrangement, the resistivity of the nanocomposite is tailored in its final device architecture across an entire order of magnitude as well as its sensitivity to strain via tuning thermal drawing processing parameters alone. Moreover, the prescribed electrical properties are coupled with suitable device designs and several fiber-based sensors are proposed aimed at specific types of deformations: i) a robotic fiber with an integrated bending mechanism where changes as small as 5° are monitored by piezoresistive nanocomposite elements, ii) a pressure-sensing fiber based on a geometrically controlled resistive signal that responds with a sub-newton resolution to changes in pressing forces, and iii) a strain-sensing fiber that tracks changes in capacitance up to 100% elongation.
可拉伸和导电纳米复合材料作为软机械传感器的重要组成部分,在健康监测、人机交互和软机器人领域中具有重要的应用前景。然而,当前的制造方法,特别是在可扩展的聚合物熔体技术方面,限制了材料性能和传感器结构对目标机械刺激模式和范围的调整。在这里,基于热塑性弹性体的纳米复合材料被设计出来,并提出了新的流变学要求,以使其与纤维加工技术兼容,从而得到米长的、柔软的、高度通用的可拉伸纤维器件。基于纳米填料排列的微观结构变化,通过单独调整热拉伸处理参数,可以在整个数量级上调整纳米复合材料的电阻率及其对应变的敏感性,使其在最终的器件结构中得到调整。此外,规定的电性能与合适的器件设计相结合,提出了几种基于纤维的传感器,旨在针对特定类型的变形:i)带有集成弯曲机构的机器人纤维,其中通过压阻纳米复合材料元件监测小至 5°的变化,ii)基于几何控制电阻信号的压力传感器纤维,对压力变化的响应分辨率达到亚牛顿级,iii)一种应变传感器纤维,可以跟踪高达 100%伸长率的电容变化。