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Analysis of Acoustic Emission Signals Recorded during Freeze-Thaw Cycling of Concrete

机译:混凝土冻融循环期间记录声发射信号的分析

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摘要

This manuscript deals with a complex analysis of acoustic emission signals that were recorded during freeze-thaw cycles in test specimens produced from air-entrained concrete. An assessment of the resistance of concrete to the effects of freezing and thawing was conducted on the basis of a signal analysis. Since the experiment simulated testing of concrete in a structure, a concrete block with the height of 2.4 m and width of 1.8 m was produced to represent a real structure. When the age of the concrete was two months, samples were obtained from the block by core drilling and were subsequently used to produce test specimens. Testing of freeze-thaw resistance of concrete employed both destructive and non-destructive methods including the measurement of acoustic emission, which took place directly during the freeze-thaw cycles. The recorded acoustic emission signals were then meticulously analysed. The aim of the conducted experiments was to verify whether measurement using the acoustic emission method during Freeze-thaw (F-T) cycles are more sensitive to the degree of damage of concrete than the more commonly employed construction testing methods. The results clearly demonstrate that the acoustic emission method can reveal changes (e.g., minor cracks) in the internal structure of concrete, unlike other commonly used methods. The analysis of the acoustic emission signals using a fast Fourier transform revealed a significant shift of the dominant frequency towards lower values when the concrete was subjected to freeze-thaw cycling.
机译:该手稿涉及对从空气夹带混凝土产生的试样中的冻融循环期间记录的声发射信号进行复杂分析。基于信号分析进行了对混凝土的抗性的评估。基于信号分析进行了对冷冻和解冻的影响。由于实验模拟混凝土在结构中的测试,因此产生了高度为2.4米和1.8米的混凝土块以表示实际结构。当混凝土的年龄为两个月时,通过核钻孔从嵌段获得样品,随后用于产生试样。混凝土的冻融电阻测试采用破坏性和非破坏性方法,包括测量声发射,直接在冻融循环期间发生。然后将记录的声发射信号进行了精细分析。进行实验的目的是验证在冻融期间使用声发射方法的测量是否对混凝土损坏程度比更常用的建筑测试方法更敏感。结果清楚地表明声发射方法可以揭示混凝土内部结构中的变化(例如,小裂缝),与其他常用的方法不同。使用快速傅里叶变换的声发射信号的分析显示,当混凝土经受冻融循环时,显性频率朝向较低值的显着变化。

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