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A flexible, highly-sensitive, and easily-fabricated carbon-nanotubes tactile sensor on polymer substrate

机译:聚合物基板上的灵活,高度灵敏且易于制造的碳纳米管触觉传感器

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A flexible, highly-sensitive, and easily fabricated carbon nanotubes (CNTs) tactile sensor is reported in this paper. CNTs are grown and patterned on bulk-micromachined silicon substrate with 3-dimensional surface profile. After polymer molding, the CNTs with 3-dimensional distribution are successfully transferred onto a flexible PDMS with 3-dimensional tactile-bump. Advantages of presented tactile sensor are (1) exactly determine loading force by resistance change due to almost linearly current-voltage (I–V) characteristics, (2) embedded patterned CNTs into polymer using simple silicon-substrate molding process, (3) 3-dimensional distributed CNTs enable the detection of shear and normal forces, and (4) 3-dimensional polymer structure by molding as a tactile-bump. One of anisotropic-type patterned CNT approach behaves good sensing sensitivity of both normal (23%/N) and shear (18%/N) forces loading. With proper CNTs designs, tactile sensor has normal and shear forces sensitivities of up to 23%/N and 95%/N, respectively.
机译:本文报道了一种灵活,高度灵敏且易于制造的碳纳米管(CNTs)触觉传感器。 CNT在具有3维表面轮廓的块体微加工硅基板上生长并构图。聚合物成型后,将具有3维分布的CNT成功转移到具有3维触觉凸点的柔性PDMS上。所提出的触觉传感器的优点是:(1)通过几乎线性的电流-电压(IV)特性导致的电阻变化来精确确定负载力;(2)使用简单的硅基板成型工艺将图案化的CNT嵌入聚合物中;(3)3三维分布的CNT能够检测剪切力和法向力,以及(4)通过模制为触觉凸点的3维聚合物结构。各向异性类型的图案化CNT方法之一在法向(23%/ N)和剪力(18%/ N)载荷下均表现出良好的感测灵敏度。通过适当的CNT设计,触觉传感器的法向力和剪切力灵敏度分别高达23%/ N和95%/ N。

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