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Enhancement of linearity range of stretchable ultrasensitive metal crack strain sensorviasuperaligned carbon nanotube-based strain engineering

机译:拉伸超声金属裂纹应变传感型碳纳米管应变碳纳米管应变工程线性度范围的增强

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摘要

Conventional mechanical crack-based strain sensors have high mechanosensitivity but suffer from limited stretchability and poor linearity. Here, we present a simple yet highly efficient strategy to enhance the strain-sensing performance of metal-based crack sensors based on platinum (Pt)/superaligned carbon nanotube (SACNT) hybrid conducting films. The proposed sensor is simply fabricated by transferring dry-spun SACNT films onto elastomer substrates and then sputtering Pt films. The SACNT underneath the Pt film endows the Pt crack sensors with large stretchability (epsilon= 100%) and excellent linearity (R-2 approximate to 0.996) while ensuring ultrahigh sensitivity (gauge factor approximate to 12 274) by modulating the cracking structure in the Pt film so that the cracked Pt parts can be bridged upon stretching even at high strains. In addition, the sensor response is found to be quite fast (approximate to 257.7 ms) and stable even under long-term operation (2000 cycles at 50% strain). Based on their excellent strain-sensing performance and mechanical flexibility, the sensors are demonstrated to detect a wide range of human motions in real time. Moreover, two single sensors can be successfully assembled in a cross shape to detect complex multiaxial strains.
机译:常规的基于机械裂缝的应变传感器具有高机械敏感性,但遭受有限的拉伸性和线性度差。在这里,我们提出了一种简单而高效的策略,以提高基于铂(PT)/超载碳纳米管(SACNT)混合电影的金属基裂缝传感器的应变感测性能。所提出的传感器通过将干燥纺丝囊膜转移到弹性体基材上并溅射PT膜来简单地制造。 PT膜下方的SACNT赋予PT裂纹传感器,其具有大的拉伸性(EPSILON = 100%)和优异的线性度(R-2近似为0.996),同时通过调制裂缝结构来确保超高敏感度(仪表近似为12 274) Pt薄膜使裂化的PT部件即使在高菌株时也可以在拉伸时桥接。此外,发现传感器响应非常快(近似为257.7毫秒),即使在长期运行下也稳定(2000个循环为50%菌株)。基于其出色的应变感测性能和机械灵活性,证明传感器实时检测广泛的人类运动。此外,两个单个传感器可以以交叉形状成功地组装以检测复杂的多轴菌株。

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  • 来源
    《Materials Horizons》 |2020年第10期|共11页
  • 作者单位

    Pusan Natl Univ Dept Nano Fus Technol Busan 46214 South Korea;

    Pusan Natl Univ Dept Nano Fus Technol Busan 46214 South Korea;

    Pusan Natl Univ Dept Nano Fus Technol Busan 46214 South Korea;

    Pusan Natl Univ Dept Nano Fus Technol Busan 46214 South Korea;

    Pusan Natl Univ Dept Nano Fus Technol Busan 46214 South Korea;

    Pusan Natl Univ Dept Nano Fus Technol Busan 46214 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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