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Detection and evaluation of failures in high-strength tendon of prestressed concrete bridges by acoustic emission

机译:声发射法检测和评估预应力混凝土桥梁高强度筋的破坏

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摘要

Failures in high-strength steel tendons of prestressed concrete structures are becoming a serious problem, as the deterioration of structures progresses due to aging. The failure is mainly attributed to the corrosion induced in severe environment as salt attack. Intensive studies were made in a laboratory and fields to investigate an applicability of acoustic emission (AE) technique to detect and locate the corrosion-induced failure. Three types of beams post-tensioned by steel bar, strand, and parallel wire cable with three different grout conditions (unbonded, partially grouted and fully grouted) were prepared in the laboratory tests. Failure was introduced by artificial corrosion, charging anodic current to the tendon. It was found that significant AE signals with extremely high amplitudes were produced by failures of steel wires and bars. Linear source location of the events was performed by three AE sensors placed in the center and the two ends of the beams. Reliability was shown to be 82-86 percent in terms of delectability of the failures. Continuous AE monitoring was carried out in two high-way bridges in service for 24 days. Eighteen AE sensors were placed at strategically selected positions on the post-tensioned beams of these bridges. Artificial AE signals were indirectly detected from the beams due to artificial failures by corrosion in small post-tensioned specimens bonded to the beams. Intensive analysis of the detected AE signals showed that meaningful AE events from the failures are clearly discernable from other sources as traffic noises and hammering. It has been proven that AE is a very useful technique to detect and evaluate failures of high-strength steel tendons in prestressed concrete bridges.
机译:随着老化导致结构的恶化,预应力混凝土结构的高强度钢腱的失效正成为一个严重的问题。失效主要归因于在恶劣环境中由于盐侵蚀而引起的腐蚀。在实验室和领域进行了深入的研究,以研究声发射(AE)技术用于检测和定位腐蚀引起的故障的适用性。在实验室测试中,准备了三种类型的,由钢筋,钢绞线和平行电缆进行三种不同灌浆条件(无粘结,部分灌浆和完全灌浆)的梁进行的预张紧。破坏是由人为腐蚀引起的,将阳极电流带入肌腱。已经发现,由于钢丝和钢筋的破坏而产生了幅度极高的明显的声发射信号。事件的线性光源位置是通过放置在光束中心和光束两端的三个AE传感器执行的。根据故障的可检测性,可靠性显示为82-86%。在使用中的两座高速公路桥梁中进行连续AE监测24天。将18个AE传感器放置在这些桥的后张紧梁上的关键位置上。人造AE信号是由于人为破坏而间接检测到的,这些人造破坏是由于粘结在梁上的后张力较小的小样本腐蚀引起的。对检测到的AE信号进行的深入分析表明,与其他来源(如交通噪音和锤击声)相比,可以明显地识别出故障引起的有意义的AE事件。事实证明,声发射技术是一种非常有用的技术,可用于检测和评估预应力混凝土桥梁中高强度钢腱的破坏。

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