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Non-Destructive Technique of Evaluating Defects on a Concrete Plate by an Acoustic Impact Method *

机译:声学冲击法评估混凝土板缺陷的无损技术*

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摘要

It is very important to assess component materials such as concrete structures with non-destructive techniques. An acoustic impact method takes advantages of an easy handling and low costs in many other non-destructive techniques. Fourier spectrum, which was obtained by a fast Fourier transform of detected waves was examined for the evaluation of artificial defects formed on the square concrete samples. The effects of a striker and a detector on the Fourier spectrum were discussed to detect defects and their positions in the specimen. Vibration mode analyses were attempted to clarity the cause of the many peaks of frequency in the Fourier spectrum. It is found that the peak frequency, its amplitude and half-power bandwidth of the frequency spectrum can be indicators for detecting the artificial defect. The results suggested that this acoustic impact method using a steel ball as a striker and a microphone as a detector was fairly useful as one of non-destructive techniques for the assessment of concrete structures.
机译:用非破坏性技术评估诸如混凝土结构等组成材料非常重要。声学冲击方法在许多其他非破坏性技术中具有易于处理且成本低廉的优点。检查通过快速检测波的傅立叶变换获得的傅立叶光谱,以评估在方形混凝土样品上形成的人工缺陷。讨论了撞针和检测器对傅立叶光谱的影响,以检测缺陷及其在试样中的位置。试图进行振动模式分析以澄清傅立叶频谱中许多频率峰值的原因。发现峰值频率,其幅度和频谱的半功率带宽可以作为检测人为缺陷的指标。结果表明,这种使用钢球作为撞针并使用麦克风作为检测器的声波冲击方法作为一种用于评估混凝土结构的非破坏性技术非常有用。

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