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A Fundamental Hammering Sound Test to assess the Degree of Deterioration in Reinforced Concrete Structure

机译:基本锤击声测试,以评估钢筋混凝土结构的恶化程度

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Conventional hammering method is the most common used inspection tools in the industry. This method requires skilled inspector to inspect. However, it is cheap and easy to use. This research is to associate spectral analyzer together with conventional analyzer to gather quantitative data. Research was conducted on both laboratory and site testing. Laboratory specimens were created with polystyrene replicating the defects. The depths and thickness were determined to vary the degree of defects. The sound pressure produced from the impact of the hammer is then evaluated with the degree of defect. From laboratory testing, healthy mortar specimen produced higher sound pressure than defective mortar specimens. The void affected the results on the defective mortar specimen. Finishing surface (plastering) also affected the sound pressure produced. Plastering on reinforced concrete (RC) structure plays huge role in inspecting as the bonding of the plastering can affect the sound pressure produced. Conventional hammering can be associated with spectral analyzer to inspect existing RC structures. Conventional hammering can replace other expensive NDT method such as infrared thermography, GPR, and etc.
机译:传统的锤击方法是该行业中最常见的二手检查工具。这种方法需要熟练的检查员检查。但是,它很便宜且易于使用。该研究是将光谱分析仪与传统分析仪联系在一起以收集定量数据。在实验室和现场测试中进行了研究。用聚苯乙烯复制缺陷的聚苯乙烯产生实验室标本。确定深度和厚度以改变缺陷程度。然后通过缺陷程度评估由锤子的冲击产生的声压。从实验室测试,健康的砂浆样品比缺陷的砂浆样品产生更高的声压。空白影响了缺陷砂浆样本的结果。精加工表面(抹灰)也影响了产生的声压。在钢筋混凝土(RC)结构上的抹灰在检查时在检查时发挥巨大作用,因为抹灰的粘接可以影响产生的声压。传统的锤击可以与光谱分析仪相关联,以检查现有的RC结构。传统的锤击可以代替其他昂贵的NDT方法,如红外热成像,GPR等。

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