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Acoustic emission monitoring of reinforced and prestressed concrete structures

机译:增强和预应力混凝土结构的声学发射监测

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Acoustic emission is an important global nondestructive test method widely used to evaluate the structural integrity of metals and fiber reinforced plastic structures. However, In concrete, application of the technology is still at the experimental stage. Microcracking and crack growth are the principal sources of emission in concrete. Bond failure, anchor slippage, and crack rubbing are also sources of emission. Tension zone cracking in reinforced concrete is a significant source of emission and has made application of the technique to concrete structures difficult. The paper describes acoustic emission monitoring of full-scale prestressed concrete girders and a reinforced concrete frame during loading. The tests on the prestressed concrete girders showed three sources of emission: shear-induced cracking in the web, flexural cracking at the region of maximum moment, and strand slippage at the anchorage zone. The reinforced concrete frame was monitored with and without concrete shear panels. The research was directed to early detection of the cracks, signature analysis, source location, moment tensor analysis, and development of criteria for acoustic emission inspection of concrete structures. Cracking of concrete in the tension areas of the reinforced concrete sections was an early source of emission. More severe emission was detected as damage levels in the structure increased.
机译:声发射是一种重要的全球性无损检测方法,广泛用于评估金属和纤维增强塑料结构的结构完整性。然而,在混凝土中,该技术的应用仍处于实验阶段。微裂纹和裂纹增长是混凝土中排放的主要来源。粘合失败,锚点滑动和裂纹摩擦也是发射的根源。钢筋混凝土中的张力区裂纹是发射的重要来源,并使该技术应用于混凝土结构困难。本文介绍了在装载过程中全尺寸预应力混凝土梁和钢筋混凝土框架的声学排放监测。预应力混凝土梁上的测试显示了三种排放来源:纤维纤维裂解在纤维网中,在最大时刻区域的弯曲裂缝,锚固区的股线滑动。使用混凝土剪切面板监测钢筋混凝土框架。该研究涉及早期检测混凝土结构声发射检测标准的裂缝,签名分析,源地点,力矩张量分析和制定标准。在钢筋混凝土部分的张力区域中混凝土的破裂是发射的早期来源。检测到更严重的排放作为结构中的损伤水平增加。

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