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首页> 外文期刊>Journal of Applied Polymer Science >3D-Printed thermoplastic polyurethane/graphene composite with porous segregated structure: Toward ultralow percolation threshold and great strain sensitivity
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3D-Printed thermoplastic polyurethane/graphene composite with porous segregated structure: Toward ultralow percolation threshold and great strain sensitivity

机译:具有多孔隔离结构的3D印刷热塑性聚氨酯/石墨烯复合材料:朝向超级渗透阈值和大应变敏感性

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摘要

Low-percolation threshold and large deformation capacity are two critical attributes of the strain sensor, which determine its sensitivity and stability respectively. However, endowing these two attributes to the strain sensor simultaneously is still a great challenge in this field. In this work, the strain sensor with the three-dimensional porous segregated structure constructed by graphene wrapped thermoplastic polyurethane (TPU) particles was fabricated successfully through the selective laser sintering technology. Results demonstrated that the percolation threshold of the composite is only 0.2 wt% and the strain gage factor can reach as high as 668.3, which represents the excellent sensitivity of the strain sensor. Furthermore, after 10 circles of stretching at the 15% strain, resistance-strain behavior of the strain sensor shows great repeatable, which represents the remarkable stability. Therefore, the highly sensible and stable strain sensor was fabricated successfully, which will provide the guidance for the manufacture of the high-performance strain sensor.
机译:低渗透阈值和大变形能力是应变传感器的两个关键属性,分别决定了其灵敏度和稳定性。然而,同时赋予应变传感器这两个属性仍然是该领域的一个巨大挑战。本文采用选择性激光烧结技术,成功地制备了石墨烯包裹的热塑性聚氨酯(TPU)颗粒构成的三维多孔隔离结构的应变传感器。结果表明,该复合材料的渗流阈值仅为0.2wt%,应变计系数可高达668.3,表明该应变传感器具有良好的灵敏度。此外,在15%应变下拉伸10圈后,应变传感器的电阻-应变行为表现出很大的可重复性,这代表了显著的稳定性。因此,成功制备了高灵敏度、高稳定性的应变传感器,为高性能应变传感器的研制提供了指导。

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