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Guided ultrasonic waves for the inspection of post-tensioned bridges

机译:引导超声波检查后张桥

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This paper investigates the use of guided waves to inspect the embedded tendons in post-tensioned bridges. The unexpected collapse of the Ynys-y-Gwas bridge in South Wales[1] has highlighted the need for an inexpensive, reliable inspection method for testing the thousands of existing post-tensioned bridges. Post-tensioned construction allows large spans to be constructed with a light, inexpensive design. Figure 1 summarizes the technique, which involves constructing the framework of the bridge out of concrete, leaving metal or plastic tubes called ducts at predetermined locations. Steel bars or multi-wire strands (collectively referred to as tendons) are threaded through the ducts once the concrete has hardened. The steel tendons are tensioned and anchored by small collets at their ends. The tensioned steel foces the concrete into compression so that is better able to support the required loads. Once the steel is tensioned, the ducts are filled with grout to provide corrosion protection. However, large air voids can be trapped in the grout, providing areas for corrosion to occur, which could lead to catastrophic failure such as the Ynys-y-Gwas collapse. The current inspection techniques have not proven to be entirely stisfactory [2], especially for inspecting the portion of the tendon mear the anchorages, which is a location where the tendon is particularly prone to corrosion.
机译:本文研究了使用导波来检查后张桥中的嵌入筋。南威尔士的Ynys-y-Gwas桥梁意外倒塌[1],突显了需要一种廉价,可靠的检查方法来测试成千上万个现有的后张桥梁。后张紧的结构允许以轻便,便宜的设计来构建大跨度。图1总结了该技术,其中涉及用混凝土构造桥梁的框架,并在预定位置保留称为管道的金属或塑料管。混凝土硬化后,将钢筋或多股钢绞线(统称为筋)穿过管道。钢筋束在其末端被小夹头张紧并锚固。张紧的钢使混凝土受压,从而更好地承受所需的载荷。钢材张紧后,管道中会充满水泥浆以提供腐蚀保护。但是,水泥浆中可能会积聚大量的空隙,为发生腐蚀提供了区域,这可能导致灾难性的故障,例如Ynys-y-Gwas坍塌。当前的检查技术尚未被证明是完全令人满意的[2],特别是对于检查肌腱部分的锚固处,这是肌腱特别容易腐蚀的位置。

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