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On the Transient Piezoresistive Response of Impacted Nanofiber- Modified Epoxy

机译:纳米纤维改性环氧树脂的瞬态压阻响应

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Nanofiller-modified composites have enormous potential for advanced structural health monitoring (SHM) because theyare self-sensing via their piezoresistive properties. However, the current state of the art is largely limited to static damagedetection between two distinct states (i.e. comparison between pre-damage and post-damaged states). This is animportant limitation because transient responses can provide great insight into damage events. It is therefore desirable toincorporate the transient effects into piezoresistive-based SHM. Unfortunately, the transient response of piezoresistivematerials has not been widely investigated. To address this limitation, this study examines the piezoresistive response ofa slender carbon nanofiber (CNF)-modified epoxy rod specimen due to impact loading as a function of time. Morespecifically, the change in voltage along the length of the rod is recorded as an idealized one-dimensional elastic planewave traverses through the specimen. This allows us to directly compare the rate of voltage change in the CNF/epoxy tothe speed of sound of the material. The fundamental insights into transient piezoresistivity herein uncovered has thepotential to greatly facilitate future advances in piezoresistive-based SHM.
机译:纳米填料改性的复合材料具有先进的结构健康监测(SHM)的巨大潜力,因为它们通过其压阻特性无法自我感应。但是,现有技术在很大程度上限于两个不同状态之间的静态损坏检测(即,损坏前和损坏后状态之间的比较)。这是一个重要的限制,因为瞬态响应可以提供对损坏事件的深入了解。因此,希望将瞬变效应纳入基于压阻的SHM中。不幸的是,压阻材料的瞬态响应尚未得到广泛研究。为了解决此限制,本研究研究了由于冲击载荷随时间的变化,细长碳纳米纤维(CNF)改性环氧棒样品的压阻响应。更具体地说,沿着杆的长度的电压变化记录为理想化的一维弹性平面\ n \ n波穿过样本。这使我们可以直接将CNF /环氧树脂中的电压变化率与材料的声速进行比较。本文揭示的有关瞬态压阻的基本见解具有极大地促进基于压阻的SHM未来发展的潜力。

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