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A Nondestructive Evaluation and Structural Health Monitoring Framework for X-COR Sandwich Composites

机译:X-COR三明治复合材料的无损评估和结构健康监测框架

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A combination of nondestructive evaluation (NDE) and structural health monitoring technique has been used to detect and localize in situ damage in X-COR sandwich composites. The NDE techniques, flash thermography and ultrasonic C-Scan, were used, and the inspection results showed promising capabilities as well as their inherent limitations. Subsequently, a guided wave based active interrogation technique was used to enable real-time damage detection and localization capabilities. Macro fiber composite and piezoelectric wafers were used for actuation and sensing, and the interaction of guided waves with the primary damage modes, delaminations and foam core separations, were studied. The results showed that delaminations lead to the guided wave mode conversion phenomenon within the material discontinuity area. A multidimensional signal processing technique, which was developed with a real-time and reference-free perspective, was used to analyze the converted wave modes in the time-space domain for damage localization. The results indicate that the converted wave mode is an effective indicator of in situ damage, especially when the received signal contains wave modes transmitted from multiple source locations.
机译:无损评估(NDE)和结构健康监测技术的结合已被用于检测和定位X-COR三明治复合材料中的原位损伤。使用了无损检测技术,闪光热成像和超声C扫描,检查结果显示了有希望的功能及其固有的局限性。随后,基于导波的主动询问技术被用于实现实时损伤检测和定位功能。使用大纤维复合材料和压电晶片进行致动和传感,研究了导波与主要损伤模式,分层和泡沫芯分离之间的相互作用。结果表明,分层导致材料不连续区域内的导波模式转换现象。多维信号处理技术是从实时和无参考的角度开发的,用于分析时空域中的转换波模式以进行损伤定位。结果表明,转换后的波模式是原位损伤的有效指示,尤其是当接收到的信号包含从多个源位置发射的波模式时。

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