首页> 外文会议>ASME Conference on Smart Materials, Adaptive Structures and Intelligent Systems >DAMAGE DETECTION IN NANOFILLER-MODIFIED COMPOSITES WITH EXTERNAL CIRCUITRY VIA RESONANT FREQUENCY SHIFTS
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DAMAGE DETECTION IN NANOFILLER-MODIFIED COMPOSITES WITH EXTERNAL CIRCUITRY VIA RESONANT FREQUENCY SHIFTS

机译:通过谐振频率偏移的外电路纳米填充复合材料损坏检测

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Conductive nanofiller-modified composites have received a lot of attention from the structural health monitoring (SHM) research community in recent years because these materials are piezoresistive (i.e. they have deformation and damage-dependent electrical conductivity) and are therefore self-sensing. To date, the vast majority of work in this area has utilized direct current (DC) interrogation to identify and/or localize damage. While this approach has been met with much success, it is also well known that nanofiller-modified composites possess frequency-dependent electrical behavior. This behavior can be roughly modeled as a parallel resistor-capacitor circuit. However, much less work has been done to explore the potential this frequency-dependent behavior for damage detection. To this end, the work herein presented covers some preliminary results which leverage high-frequency electrical interrogation for damage detection. More specifically, carbon nanofiber (CNF)/epoxy specimens are produced and connected to an external inductor in both series and parallel configurations. Because the CNF/epoxy electrically behaves like a resistor-capacitor circuit, the inclusion of an inductor enables electrical resonance to be achieved. Changes in resonant frequency are then used for rudimentary damage detection. These preliminary results indicate that the potential of SHM via the piezoresistive effect in nanofiller-modified composites can be considerably expanded by leveraging alternating current (AC) interrogation and resonant frequency principles.
机译:导电纳米填充物改性复合材料近年来从结构健康监测(SHM)研究界的注意力受到了很多关注,因为这些材料是压阻的(即它们具有变形和损伤依赖性导电性),因此是自感的。迄今为止,该地区的绝大多数工作已经利用直流(DC)询问来识别和/或本地化损坏。虽然这种方法已经满足了多大成功,但众所周知,纳米填充改性的复合材料具有频率依赖性的电动行为。该行为可以大致建模为并联电阻电容电路。然而,已经完成了更少的工作来探索损害损伤的频率依赖性行为。为此,本文的工作介绍了一些初步结果,利用高频电信识的损坏检测。更具体地,在串联和并联配置中产生碳纳米纤维(CNF)/环氧试样并连接到外部电感器。因为CNF /环氧树脂的表现类似于电阻电容器电路,所以包含电感器使得能够实现电谐振。然后将谐振频率的变化用于基本损伤检测。这些初步结果表明,通过利用交流(AC)询问和谐振频率原理,可以显着地扩展通过压阻效应的SHM的电位。

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