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Real-Time Detection of Impact Load on Composite Laminates with Embedded small-Diameter Optical Fiber

机译:具有嵌入式小径光纤复合层压板上冲击载荷的实时检测

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It is well known that the compression after impact (CAI) strength of carbon fiber reinforced plastic (CFRP) laminates decreases by impact damage, especially delamination. The impact damage h as a close relation to impact energy, which can be derived from the time history of impact load. Thus, it is important to detect the impact load applied to the composites. In this study, single-mode or multi-mode small-diameter optical fibers embedded in CFRP laminates were used as a sensor for detecting the impact load. Diameters of the cladding and the polyimide coating are 40 mu m, respectively. Such optical fibers embedded inside laminas cause no serious effect on the mechanical properties of composites. The optical fiber sensors were able to detect the impact by bending loss in the vicinity of impact point. The optical fibers were embedded parallel to reinforcing fibers in CFRP composites. Charpy impact tests were performed for the CFRP specimens. The strain ont he surface of the specimens, the optical loss and the impact load were measured as a function of time. Then, the relationship between the optical loss and the impact load was discussed experimentally and theoretically.
机译:众所周知,碳纤维增强塑料(CFRP)层压板的冲击(CAI)强度的压缩通过冲击损伤,尤其是分层造成的影响。冲击损伤H作为冲击能量的密切关系,这可以来自冲击载荷的时间历史。因此,重要的是检测施加到复合材料的冲击载荷。在本研究中,使用CFRP层压板中的单模或多模小径光纤被用作用于检测冲击载荷的传感器。包层的直径和聚酰亚胺涂层分别为40μm。嵌入在Laminas内的这种光纤对复合材料的机械性能没有严重影响。光纤传感器能够通过冲击点附近的弯曲损失来检测冲击。在CFRP复合材料中嵌入与增强纤维平行的光纤。对CFRP标本进行夏比冲击试验。作为时间的函数测量样品的表面,光学损失和冲击载荷的菌株。然后,在实验和理论上讨论光学损耗与冲击载荷之间的关系。

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