首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >SENSOR NETWORKS FOR IN-SITU FAILURE IDENTIFICATION IN WOVEN COMPOSITES THROUGHOUT IMPACT
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SENSOR NETWORKS FOR IN-SITU FAILURE IDENTIFICATION IN WOVEN COMPOSITES THROUGHOUT IMPACT

机译:传感器网络,用于在不受影响的情况下对机织复合材料进行原位故障识别

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In this study, the development of embedded fiber Bragg grating (FBG) sensor networks within composite materials is investigated. Various densities of optical fibers were embedded within two-dimensional woven composite laminates, and low-velocity impact damage responses were evaluated to determine the effects on the mechanical behavior of the laminates. The woven composites were subjected to multiple strikes at 2 m/s until perforation occurred, and the impactor position and acceleration were monitored throughout each event. From these measurements, we obtained dissipated energies and contact forces for specimens with and without embedded optical fibers. Cross sectional optical micrographs of the specimens were also used to determine the local effects of the embedded fibers on neighboring fibers and the surrounding matrix material, both before and after impact events. Multiple FBG sensors were serially multiplexed together to create a single fiber sensing network capable of monitoring damage for each impact event. Residual strain information was gathered through strain distributions along the FBG sensors to map out the near-field and far-field regions with respect to the impact location. The resulting data will be used to better monitor and predict damage in the composite system when combined with global response data from the laminate itself.
机译:在这项研究中,研究了复合材料中嵌入式光纤布拉格光栅(FBG)传感器网络的发展。将各种密度的光纤嵌入二维机织复合材料层压板中,并对低速冲击损伤响应进行评估,以确定对层压板机械性能的影响。织造的复合材料以2 m / s的速度遭受多次撞击,直到发生穿孔为止,并且在每个事件中都对撞击器的位置和加速度进行监控。通过这些测量,我们获得了带有和不带有嵌入式光纤的标本的耗散能量和接触力。样品的横截面光学显微照片还用于确定包埋纤维在撞击之前和之后对邻近纤维和周围基质材料的局部影响。多个FBG传感器被串行多路复用在一起,以创建单个光纤传感网络,该网络能够监视每个冲击事件的损坏。通过沿FBG传感器的应变分布来收集残余应变信息,以针对冲击位置绘制出近场和远场区域。当与来自层压板本身的整体响应数据结合使用时,所得数据将用于更好地监视和预测复合系统中的损坏。

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