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首页> 外文期刊>Structural health monitoring >Analytical approach for crack identification of glass fiber reinforced polymer-sea sand concrete composite structures based on strain dissipations
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Analytical approach for crack identification of glass fiber reinforced polymer-sea sand concrete composite structures based on strain dissipations

机译:基于应变耗散的玻璃纤维增强聚合物 - 海砂混凝土结构裂纹识别分析方法

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摘要

Glass fiber reinforced polymer bars have potential application in the seawater sea sand concrete. In this study, an analytical method was proposed to examine the internal crack development in glass fiber reinforced polymer-sea sand concrete composites. The method was derived by analyzing the strain dissipation and shear-lag behavior. Thus, the internal cracks can be quantitatively identified by the proposed model with Fourier transform analysis. The proposed approach was experimentally verified through pullout tests for the specimens with artificial cracks. The results indicated that the prediction errors were less than 10%. In addition, the piezoelectric sensors were adopted to verify the proposed model. A damage index (DI) defined by the energy loss of received signals was used to characterize cracks inside the composite. Loading test results indicated that the DI-calculated cracks were consistent with the proposed analytical model. Finally, the cyclic loading tests of the glass fiber reinforced polymer composite were conducted using both strain gauges and PZT sensors. The results have shown that the differences between the proposed approach and PZT sensors were less than 15%. Thus, the proposed approach in this study could provide an alternative approach for quantitative evaluation of internal cracks in the glass fiber reinforced polymer-coral sand-cement composites.
机译:玻璃纤维增​​强聚合物棒具有海水海砂混凝土的潜在应用。在该研究中,提出了一种分析方法来检查玻璃纤维增​​强聚合物 - 海砂混凝土复合材料的内裂纹。通过分析应变耗散和剪切滞后行为来得出该方法。因此,可以通过具有傅里叶变换分析的提出模型来定量地识别内部裂缝。通过对具有人工裂缝的标本的拉出试验进行了实验验证了所提出的方法。结果表明,预测误差小于10%。此外,采用压电传感器来验证所提出的模型。由接收信号的能量损失定义的损伤指数(DI)用于表征复合材料内的裂缝。加载测试结果表明二计算裂缝与所提出的分析模型一致。最后,使用应变仪表和PZT传感器进行玻璃纤维增​​强聚合物复合物的循环加载试验。结果表明,所提出的方法和PZT传感器之间的差异小于15%。因此,本研究中的提出方法可以提供玻璃纤维增​​强聚合物 - 珊瑚砂水泥复合材料中内裂纹的替代方法。

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