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Nonlinear ultrasonic guided waves for prestress level monitoring in prestressing strands for post-tensioned concrete structures

机译:非线性超声导波,用于预应力混凝土结构预应力钢绞线中的预应力水平监测

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Monitoring load levels in multi-wire steel strands is crucial to ensuring the proper structural performance of post-tensioned concrete structures, suspension bridges and cable-stayed bridges. The post-tensioned box-girder structural scheme is widely used in several bridges, including 90% of the California inventory. In this structural typology, prestressing tendons are the main load-carrying components. Therefore loss of prestress as well as the presence of structural defects (e.g. corrosion and broken wires) affecting these elements are critical for the performance of the entire structure and may conduct to catastrophic failures. Unfortunately, at present there is no well-established methodology for the monitoring of prestressing (PS) tendons able to provide simultaneous and continuous information about the presence of defects as well as prestress levels. In this paper the authors develop a methodology to assess the level of load applied to the strands through the use of ultrasonic nonlinearity. Since an axial load on a multi-wire strand generates proportional contact stresses between adjacent wires, ultrasonic nonlinearity from the inter-wire contact must be related to the level of axial load. The work presented shows that the higher-harmonic generation of ultrasonic guided waves propagating in individual wires of the strand varies monotonically with the applied load, with smaller higher-harmonic amplitudes with increasing load levels. This trend is consistent with previous studies on higher-harmonic generation from ultrasonic plane waves incident on a contact interface under a changing contact pressure. The paper presents the results of experimental researches on free strands and embedded strands, and numerical studies (nonlinear Finite Element Analysis) on free strands.
机译:监控多股钢绞线中的载荷水平对于确保后张拉的混凝土结构,悬索桥和斜拉桥的适当结构性能至关重要。后张拉箱梁结构方案广泛用于几座桥梁,包括90%的加州库存。在这种结构类型中,预应力筋是主要的承载构件。因此,预应力的损失以及影响这些元素的结构缺陷(例如腐蚀和断线)的存在对于整个结构的性能至关重要,并且可能导致灾难性故障。不幸的是,目前还没有一种完善的方法来监视预应力(PS)肌腱,该方法能够提供有关缺陷的存在以及预应力水平的同时且连续的信息。在本文中,作者开发了一种方法,可通过使用超声波非线性来评估施加到绞线上的载荷水平。由于多股绞线上的轴向载荷会在相邻的导线之间产生成比例的接触应力,因此,导线间接触产生的超声非线性必须与轴向载荷的大小相关。提出的工作表明,在钢绞线的各个导线中传播的超声波导波的高次谐波生成随所施加的载荷而单调变化,随着载荷水平的增加,较小的高次谐波振幅也随之变化。这种趋势与先前关于在不断变化的接触压力下入射在接触界面上的超声平面波产生高次谐波的研究一致。本文介绍了对自由线和嵌入线的实验研究结果,以及对自由线的数值研究(非线性有限元分析)。

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