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Transfer printed laser induced graphene strain gauges for embedded sensing in fiberglass composites

机译:转移印刷激光诱导的石墨烯应变仪,用于玻璃纤维复合材料中的嵌入式感测

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摘要

The continuous monitoring of strain in fiber-reinforced composites while in service typically requires bonding a network of sensors to the surface of the composite structure. To eliminate such needs, and to reduce bulk and limit additional weight, this work utilizes the transfer printing of laser induced graphene (LIG) strain gauges onto the surface of commercial fiberglass prepreg for the in situ self-sensing of strain. The resultant embedded strain sensor is entirely integrated within the final composite material, therefore reducing weight and eliminating limitations due to external bonding compared to current alternatives. Additionally, the simple printing process used here allows for the customization of the size and sensing requirements for various applications. The LIG strain sensor is shown to be capable of tracking monotonic cyclic strain as shown during tensile loading and unloading of the host composite, while also proving capable of tracking the dynamic motion of the composite which is characterized via frequency response and sinusoidal base excitation. The LIG strain gauge in this work can thus be used for tracking either quasi-static or dynamic variations in strain for the determination of the deformation experienced by the material, as well as the frequency content of the material for structural health monitoring purposes.
机译:在服务中的纤维增强复合材料中的应变的连续监测通常需要将传感器网络绑定到复合结构的表面。为了消除这些需求,并减少块状并限制额外的重量,该工作利用激光诱导的石墨烯(LIG)应变计的转移印刷到商业玻璃纤维预浸料的表面上,以便原位自感应的应变。得到的嵌入式应变传感器完全集成在最终复合材料内,因此与电流替代方案相比,减少了由于外粘合而产生的限制。此外,这里使用的简单打印过程允许定制各种应用的大小和感测要求。 Lig应变传感器被示出为能够跟踪单调循环应变,如在宿主复合的拉伸负载和卸载期间所示,同时还证明能够跟踪复合材料的动态运动,其特征在于频率响应和正弦基础激发。因此,该工作中的Lig应变仪可以用于跟踪用于确定材料所经历的变形的菌株的准静态或动态变化,以及用于结构健康监测目的的材料的频率含量。

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