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A photophone-based remote nondestructive testing approach to interfacial defect detection in fiber-reinforced polymer-bonded systems

机译:基于光电电话的远程无损检测方法,用于纤维增强的聚合物粘结系统中的界面缺陷检测

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Externally bonded fiber-reinforced polymer is an increasingly popular material to be used in strengthening and retrofitting aging structures. In such structures, debonding defects may occur at or near the interface between fiber-reinforced polymer and concrete. As such debonding in fiber-reinforced polymer-bonded systems is generally brittle in nature, there is a need of a reliable inspection technique that can provide early warning of interfacial defects such that premature failure of fiber-reinforced polymer-strengthened structures can be avoided. A remote nondestructive testing approach based on the working principle of a photophone is presented here as an economical alternative to laser Doppler vibrometry for detecting interfacial defects. Concrete specimens retrofitted with fiber-reinforced polymer are excited acoustically by white noise, while the surface of the structure is illuminated by a light source. If an interfacial defect exists beneath the surface, the surface will exhibit a frequency response different from an intact surface. The surface of the fiber-reinforced polymer portrays the role of flexible mirror in a photophone, which encodes information about surface vibration into amplitude-modulated light signal. A light detector then captures the irradiance of the reflected beam, and the amplitude modulation is converted into frequency domain in post-processing. With this technique, defect dimensions and thus damage extent can be inferred from the frequency spectrum obtained. The obtained results correspond well with the theoretical calculation, demonstrating the robustness and the applicability of the proposed technique in civil infrastructure.
机译:外部粘合的纤维增强聚合物是一种日益流行的材料,可用于加强和翻新老化结构。在这样的结构中,在纤维增强的聚合物和混凝土之间的界面处或附近可能发生脱胶缺陷。由于在纤维增强的聚合物粘合的系统中这种剥离通常本质上是脆性的,因此需要一种可靠的检查技术,其可以提供界面缺陷的早期警告,从而可以避免纤维增强的聚合物增强的结构的过早失效。本文介绍了一种基于光电电话的工作原理的远程无损检测方法,可替代激光多普勒振动测定法经济地检测界面缺陷。用纤维增强的聚合物翻新的混凝土试样在白噪声的作用下被激发,而结构的表面被光源照亮。如果表面下存在界面缺陷,则该表面将表现出与完整表面不同的频率响应。纤维增强聚合物的表面描绘了柔性镜在光电电话中的作用,该镜将有关表面振动的信息编码为振幅调制的光信号。然后,光检测器捕获反射光束的辐照度,并且在后处理中将振幅调制转换为频域。利用这种技术,可以从获得的频谱中推断出缺陷尺寸,从而推断出破坏程度。所得结果与理论计算吻合良好,证明了该技术在民用基础设施中的鲁棒性和适用性。

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