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Finite element modelling of lamb wave propagation in prestress concrete and effect of the prestress force on the wave’s characteristic

机译:羔羊波在预应力混凝土中传播的有限元模拟及预应力对波浪特性的影响

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摘要

In order to assess the structural reliability of bridges, an accurate and cost effective Non-Destructive Evaluation (NDE) technology is required to ensure their safe and reliable operation. Over 60% of the Australian National Highway System is prestressed concrete (PSC) bridges according to the Bureau of Transport and Communication Economics (1997). Most of the in-service bridges are more than 30 years old and may experience a heavier traffic load than their original intended level.ududUse of Ultrasonic waves is continuously increasing for (NDE) and Structural Health Monitoring (SHM) in civil, aerospace, electrical, mechanical applications. Ultrasonic Lamb waves are becoming more popular for NDE because it can propagate long distance and reach hidden regions with less energy loses.ududThe purpose of this study is to numerically quantify prestress force (PSF) of (PSC) beam using the fundamental theory of acoustic-elasticity. ududA three-dimension finite element modelling approach is set up to perform parametric studies in order to better understand how the lamb wave propagation in PSC beam is affected by changing in the PSF level. Results from acoustic-elastic measurement on prestressed beam are presented, showing the feasibility of the lamb wave for PSF evaluation in PSC bridges.
机译:为了评估桥梁的结构可靠性,需要一种准确且具有成本效益的无损评估(NDE)技术,以确保其安全可靠的运行。根据运输和通讯经济学局(1997)的数据,澳大利亚国家公路系统中超过60%是预应力混凝土(PSC)桥梁。大多数在役桥梁已有30多年的历史,并且可能会承受比原先预定水平更高的交通负荷。 ud ud在民用建筑中,超声波(NDE)和结构健康监测(SHM)的使用不断增加。航空,电气,机械应用。超声波Lamb波在NDE中越来越受欢迎,因为它可以传播很长的距离并到达隐藏区域,而能量损失较少。 ud ud本研究的目的是使用基本理论对PSC束的预应力(PSF)进行数值量化。弹性。 ud ud建立了三维有限元建模方法以执行参数研究,以便更好地了解PSC束中的变化如何影响PSC束中的兰姆波传播。给出了对预应力梁进行声弹性测量的结果,表明了兰姆波在PSC桥梁中进行PSF评估的可行性。

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