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Monitoring Poisson’s Ratio Degradation of FRP Composites under Fatigue Loading Using Biaxially Embedded FBG Sensors

机译:使用双轴嵌入式FBG传感器监测泊松复合材料下FRP复合材料的比例

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摘要

The significance of strain measurement is obvious for the analysis of Fiber-Reinforced Polymer (FRP) composites. Conventional strain measurement methods are sufficient for static testing in general. Nevertheless, if the requirements exceed the capabilities of these conventional methods, more sophisticated techniques are necessary to obtain strain data. Fiber Bragg Grating (FBG) sensors have many advantages for strain measurement over conventional ones. Thus, the present paper suggests a novel method for biaxial strain measurement using embedded FBG sensors during the fatigue testing of FRP composites. Poisson’s ratio and its reduction were monitored for each cyclic loading by using embedded FBG sensors for a given specimen and correlated with the fatigue stages determined based on the variations of the applied fatigue loading and temperature due to the autogenous heating to predict an oncoming failure of the continuous fiber-reinforced epoxy matrix composite specimens under fatigue loading. The results show that FBG sensor technology has a remarkable potential for monitoring the evolution of Poisson’s ratio on a cycle-by-cycle basis, which can reliably be used towards tracking the fatigue stages of composite for structural health monitoring purposes.
机译:应变测量的意义对于纤维增强聚合物(FRP)复合材料的分析是显而易见的。常规应变测量方法通常是静态测试。然而,如果要求超过了这些传统方法的能力,则需要更复杂的技术来获得应变数据。光纤布拉格光栅(FBG)传感器对常规的菌株测量具有许多优点。因此,本文表明,在FRP复合材料的疲劳试验期间使用嵌入式FBG传感器进行双轴应变测量的新方法。通过使用针对给定试样的嵌入式FBG传感器监测每个循环加载的泊松比率及其还原,并与基于所施加的疲劳负载和温度的变化而确定的疲劳阶段相关,因为自动加热以预测迎面而来的失败疲劳负载下连续纤维增强环氧基质复合标本。结果表明,FBG传感器技术具有显着的潜力,可在逐个周期的基础上监测泊松比的演变,这可以可靠地用于跟踪复合材料的疲劳阶段以进行结构健康监测目的。

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