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Performance characterization of VGCF/epoxy nanocomposite sensors under static load cycles and in static structural health monitoring

机译:VGCF /环氧纳米复合材料传感器在静态载荷循环和静态结构健康监测下的性能表征

摘要

Compared to conventional metal-foil strain gauges, nanocomposite piezoresistive strain sensors have demonstrated high strain sensitivity and have been attracting increasing attention in recent years. To fulfil their ultimate success, the performance of vapor growth carbon fiber (VGCF)/epoxy nanocomposite strain sensors subjected to static cyclic loads was evaluated in this work. A strain-equivalent quantity (resistance change ratio) in cantilever beams with intentionally induced notches in bending was evaluated using the conventional metal-foil strain gauges and the VGCF/epoxy nanocomposite sensors. Compared to the metal-foil strain gauges, the nanocomposite sensors are much more sensitive to even slight structural damage. Therefore, it was confirmed that the signal stability, reproducibility, and durability of these nanocomposite sensors are very promising, leading to the present endeavor to apply them for static structural health monitoring.
机译:与传统的金属箔应变仪相比,纳米复合压阻应变传感器已显示出高应变敏感性,并且近年来受到越来越多的关注。为了实现他们的最终成功,在这项工作中评估了承受静态循环载荷的气相生长碳纤维(VGCF)/环氧纳米复合应变传感器的性能。使用常规的金属箔应变仪和VGCF /环氧树脂纳米复合材料传感器评估了在弯曲中有意引起缺口的悬臂梁中的等效当量(电阻变化比)。与金属箔应变计相比,纳米复合材料传感器即使对轻微的结构损坏也更加敏感。因此,证实了这些纳米复合传感器的信号稳定性,可再现性和耐久性是非常有前途的,从而导致当前努力将其用于静态结构健康监测。

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