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Assessing Alkali-silica Reaction Damage To Concrete With Non-destructive Methods: From The Lab To The Field

机译:用非破坏性方法评估碱-二氧化硅反应对混凝土的破坏:从实验室到现场

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摘要

The effectiveness of any non-destructive (ND) procedure for evaluating the damage to concrete depends on the relation between physical and mechanical properties. With this attempt, this paper deals with the application of three ND methods (ultrasonic wave velocities, dynamic Young modulus measured with resonant frequency and electrical resistivity) for the evaluation of concrete cores drilled from a large hydraulic structure affected by alkali-silica reaction (ASR). In parallel, the concrete was tested for its mechanical properties and petrographic examinations were also performed. ND results were compared with those obtained from concrete specimens made in the lab and showing various levels of deterioration associated with ASR. Results from all methods (except electrical resistivity) showed that the overall condition of the concrete remains of good quality, in spite of the significant expansion rates measured on the structure. On the one hand, damage is mainly located within the first two meters from the surface. On the other hand, concrete deterioration at the bottom of the structure was very low. The electrical resistivity did not appear to be appropriate for evaluating the damage level related to ASR. Dynamic Young modulus and ultrasonic pulse velocity yielded better results. The best correlation was obtained between the P-wave velocities and the static Young modulus. This study emphasizes that laboratory results cannot be directly extrapolated to field results.
机译:用于评估混凝土损伤的任何非破坏性(ND)程序的有效性取决于物理和机械性能之间的关系。通过这种尝试,本文研究了三种ND方法(超声波速度,用共振频率和电阻率测量的动态杨氏模量)在受碱-硅反应(ASR)影响的大型水工结构中钻孔混凝土芯的评估中的应用。 )。同时,对混凝土的力学性能进行了测试,并进行了岩石学检查。将ND结果与实验室中的混凝土样品得到的结果进行了比较,结果表明与ASR相关的各种劣化程度。所有方法的结果(电阻率除外)都表明,尽管在结构上测得了很大的膨胀率,但混凝土的整体状况仍保持了良好的质量。一方面,损坏主要位于距表面的前两米以内。另一方面,结构底部的混凝土劣化非常小。电阻率似乎不适用于评估与ASR相关的损伤程度。动态杨氏模量和超声脉冲速度产生更好的结果。在P波速度和静态杨氏模量之间获得了最佳的相关性。这项研究强调,实验室结果不能直接外推到现场结果。

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