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Material Characterization and Condition Assessment of Reinforced Concrete Bridge Decks by Complementary NDE Technologies

机译:互补NDE技术钢筋混凝土桥甲板的材料特征及条件评价

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Static and dynamic response of reinforced concrete (RC) bridge elements depends on the material characteristics and possibly introduced damage. While initial material variability can be introduced during construction, the dominant changes are a result of deterioration processes in RC elements. The most commonly found problem in bridge decks is corrosion induced concrete deterioration, which is initiated by rebar corrosion and afterwards extends into concrete cracking, delamination and ultimately concrete spalling. The effects of deterioration can be effectively detected and characterized using several complementary nondestructive evaluation (NDE) technologies. The presented approach relies on the use of five NDE technologies namely: impact echo, ultrasonic surface waves, ground penetrating radar, half-cell potential and electrical resistivity. The application of listed technologies is illustrated on material characterization and defect/deterioration detection of RC bridge decks. Incorporation of the NDE results in an enhanced structural identification analysis is illustrated.
机译:钢筋混凝土(RC)桥接元件的静态和动态响应取决于材料特性,可能引入损坏。虽然在施工期间可以引入初始材料变异性,但主导变化是RC元件中劣化过程的结果。最常见的桥式甲板上的问题是腐蚀引起的混凝土劣化,其通过钢筋腐蚀和之后延伸到混凝土裂缝,分层和最终混凝土剥落中。可以使用几种互补无损评估(NDE)技术有效地检测和特征可以有效地检测劣化的影响。所提出的方法依赖于使用五种NDE技术即:冲击回波,超声波表面波,地面穿透雷达,半电池电位和电阻率。 rc桥甲板的材料表征和缺陷/恶化检测说明了所列技术的应用。掺入NDE导致提高结构识别分析。

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