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Development of MWCNT-based strain sensor using flexible substrate

机译:基于柔性基板的基于MWCNT的应变传感器的开发

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Highly sensitive two-dimensional strain sensor, which consists of area-arrayed fine bundles of multi-walled carbon nanotubes (MWCNTs), has been developed by applying MEMS technology. Area-arrayed MWCNT bundles were grown on a substrate by CVD technique. When a compressive load was applied to the bundle, the electrical resistance of the bundle increased monotonically due to the change of the electronic band structure of the deformed CNT. By measuring the change of the resistance of each bundle, the two-dimensional distribution of the applied pressure was detected precisely. In the previous study, it was found that MWCNT bundle deformed repeatedly in the strain range up to 60%. Thus, in this study, the deformation behaviour of the MWCNT bundle on a flexible substrate, which is effective for rough surface, was observed. It was confirmed that the MWCNT bundle coated by PDMS showed elastic deformation under the application of axial compressive load of 60%, and the allowable maximum load was 3 mN.
机译:高灵敏度的二维应变传感器由MEMS技术开发而成,该传感器由多壁碳纳米管(MWCNT)的面阵列细束组成。通过CVD技术在衬底上生长区域排列的MWCNT束。当对束施加压缩负载时,由于变形的CNT的电子带结构的变化,束的电阻单调增加。通过测量每个束的电阻的变化,可以精确地检测施加压力的二维分布。在先前的研究中,发现MWCNT束在高达60%的应变范围内反复变形。因此,在这项研究中,观察到了对柔性表面有效的MWCNT束在柔性基板上的变形行为。可以确认,在施加60%的轴向压缩载荷的条件下,PDMS包覆的MWCNT束表现出弹性变形,最大允许载荷为3 mN。

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