首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems;SMASIS2011 >SIMULTANEOUS MEASUREMENT OF DEFORMATION AND FRACTURE OF COMPOSITE STRUCTURES USING FIBER BRAGG GRATING SENSORS
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SIMULTANEOUS MEASUREMENT OF DEFORMATION AND FRACTURE OF COMPOSITE STRUCTURES USING FIBER BRAGG GRATING SENSORS

机译:使用光纤布拉格光栅传感器同时测量复合结构的变形和断裂

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Because of high specific strength and many other benefits, the use of composites for the large lightweight structures such as modern aircrafts and wind turbines are increasing. However, one of the serious drawbacks of composites is that the structural failure occurs in complex patterns without yielding. Therefore, structural health monitoring has been intensively investigated for the early detection of any problems in structural integrity. One of the promising sensors for this purpose is fiber Bragg grating (FBG) sensor. They can be easily inserted into the layered-structure of the composite materials due to their small size. The excellent multiplexing capability enables measurement to be taken at multiple points along a single sensor line. As well as damage detection, the structural shape measurement also draws attention. Particularly for structures experiencing aerodynamic forces such as wind turbines or helicopter blades, the structural shape itself is important because the applied aerodynamic forces are affected by structural shape deflections. Therefore, the authors have conducted a series of studies on the structural shape estimation of various structures. We have also developed a wavelength division multiplexing (WDM) Bragg grating sensing system for high speed strain sensing as well as low frequency dynamic strains. In the case of high-speed sensing, the interrogator allows a sampling ratio of over 40 kHz for six linearly arrayed FBG sensors per channel. Utilizing the developed interrogator, this paper presents some experimental results for simultaneous measurement of deformation and fracture signals of composite structures. An array of FBG sensors were installed onto composite beam specimens and the acoustic emission (AE) signals due to structural failure was continuously monitored while the overall structural deflection shape was monitored in real time. The reconstructed shapes of the specimens were in good agreement with the shapes captured from photographs taken with a high-speed camera. In summary, it was demonstrated that both fracture signals and the overall deformation shape of composite structures could be simultaneously monitored.
机译:由于高的比强度和许多其他好处,复合材料在大型轻质结构(例如现代飞机和风力涡轮机)中的使用正在增加。然而,复合材料的严重缺陷之一是结构破坏以复杂的形式发生而没有屈服。因此,为了尽早发现结构完整性中的任何问题,已经对结构健康监测进行了深入研究。用于此目的的有前途的传感器之一是光纤布拉格光栅(FBG)传感器。由于它们的小尺寸,它们可以容易地插入到复合材料的层状结构中。出色的多路复用能力使测量可以沿着一条传感器线在多个点进行。除了损坏检测之外,结构形状的测量也引起了人们的注意。特别是对于经受空气动力的结构,例如风力涡轮机或直升机叶片,结构形状本身很重要,因为施加的空气动力受到结构形状变形的影响。因此,作者对各种结构的结构形状估计进行了一系列研究。我们还开发了一种波分复用(WDM)布拉格光栅感测系统,用于高速应变感测和低频动态应变。在高速感应的情况下,询问器允许每个通道六个线性阵列FBG传感器的采样率超过40 kHz。利用开发的询问器,本文提出了一些同时测量复合结构的变形和断裂信号的实验结果。将一系列FBG传感器安装到复合梁样本上,并连续监测由于结构破坏而产生的声发射(AE)信号,同时实时监测总体结构挠曲形状。标本的重建形状与从高速相机拍摄的照片中捕获的形状非常吻合。总之,证明了可以同时监测断裂信号和复合结构的整体变形形状。

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