首页> 外文期刊>Journal of intelligent material systems and structures >Robust non-destructive inspection of composite aerospace structures by extraction of ultrasonic guided-wave transfer function in single-input dual-output scanning systems
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Robust non-destructive inspection of composite aerospace structures by extraction of ultrasonic guided-wave transfer function in single-input dual-output scanning systems

机译:通过在单输入双输出扫描系统中提取超声导波传递函数,对复合航空结构进行无损检测

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摘要

Ultrasonic guided-wave testing is widely utilized for damage detection in plate-like structural components, including composite aircraft fuselage and wing panels. Many guided-wave tests involve transducer scanning to cover finite areas, a task that is most effectively performed by non-contact wave transduction means. The most common guided-wave test implementation consists of a "single-input single-output" scheme. The single-input single-output scheme leads to a transfer function that is convolved with the particular frequency response of the transducers and that of the transducer-to-structure paths (in both excitation and detection). These responses can be unknown or generally variable, especially in non-contact scanning systems and impact excitations. This article proposes a "single-input dual-output" scheme for ultrasonic guided-wave testing in scanning systems that is based on a deconvolution operation. The single-input dual-output scheme better isolates the structural transfer function that is the only property affected by the presence of possible damage. The single-input dual-output scheme was applied to two guided-wave scanning systems under development to detect impact-type damage in stiffened skin-to-stringer panels representative of modern composite aircraft construction. The results demonstrate the dual-output technique and also shed some light on the role of the different frequency bands for the detection of damage at different locations of the skin-to-stringer assembly.
机译:超声波导波测试被广泛用于板状结构部件的损伤检测,包括复合飞机机身和机翼板。许多导波测试都涉及换能器扫描以覆盖有限的区域,这是通过非接触波转换手段最有效地执行的任务。最常见的导波测试实现由“单输入单输出”方案组成。单输入单输出方案导致传递函数与换能器的特定频率响应以及换能器到结构的路径(在激励和检测中)的特定频率响应卷积。这些响应可能是未知的或通常是可变的,尤其是在非接触式扫描系统和撞击激励中。本文提出了一种基于反卷积运算的扫描系统中超声导波测试的“单输入双输出”方案。单输入双输出方案可以更好地隔离结构传递函数,该结构传递函数是受可能的损坏影响的唯一属性。单输入双输出方案已应用于正在开发的两个导波扫描系统,以检测代表现代复合材料飞机结构的加劲的蒙皮纵梁板的冲击型损坏。结果证明了双输出技术,并且还阐明了不同频带在检测皮肤到纵梁组件的不同位置处的损坏中的作用。

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