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Impact Damage Detection and Localization of Adhesively Bonded Fiber Reinforced Structures Using Silver Nanoparticle Based Printed Circuits

机译:使用基于银纳米粒子的印刷电路的粘合纤维增强结构的冲击损伤检测和定位

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Electrical conductivity of carbon fibers and carbon nanotubes provides the possibility of in situ strain monitoring and damage detection of composite structures by electrical resistance measurement To exploit this property and use the material itself as a sensor in a structural health monitoring system a reliable contacting of the material is needed to enable electrical resistance measurement during operation Due to its high potential for industrial, automation and its excellent reproducibility, ink-jet printing serves as promising technology to print circuits and realize contacting on the monitored material. The study deals with a new structural health monitoring approach using ink-jet printing of silver nanoparticle based ink directly onto the composites structure. Impact damages are introduced into adhesively bonded glass fiber reinforced polymer test specimens. A modification of the epoxy based adhesive films with carbon nanoparticles allows for electrical resistance measurements through the bonding The introduced impacts are investigated using non-destructive testing methods, 1 e. ultrasonic inspection, and light microscopy. Electrical resistance measurementshows the possibility of accurate damage detection and damage localization in one or two dimensions, depending on the conducting path designs.
机译:碳纤维和碳纳米管的导电性提供了通过电阻测量原位应变监测和复合结构损伤检测的可能性。要利用此特性并将材料本身用作结构健康监测系统中的传感器,可以可靠地与材料接触需要进行操作期间的电阻测量。由于其在工业,自动化方面的潜力巨大,并且具有出色的可重复性,因此喷墨印刷是一种有前途的技术,可用于印刷电路并实现与被监测材料的接触。该研究涉及一种新的结构健康监测方法,该方法使用喷墨打印将基于银纳米粒子的墨水直接打印到复合材料结构上。冲击损伤被引入到粘合玻璃纤维增​​强聚合物测试样品中。用碳纳米颗粒对基于环氧的胶粘剂膜进行的改性可以通过粘结来测量电阻。使用无损检测方法1 e对引入的冲击进行了研究。超声波检查和光学显微镜。电阻测量表明,根据导电路径设计,可以在一维或二维中进行准确的损伤检测和损伤定位。

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