首页> 外文会议>International Symposium on Cement amp; Concrete; CANMET/ACI International Symposium on Concrete Technology for Sustainable Development; 20060919-22; 20060919-22; Xi'an(CN); Xi'an(CN) >Quantifying the Impact of Plastic Shrinkage Cracking on the Corrosion of Reinforced Concrete to Improve Service Life Prediction
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Quantifying the Impact of Plastic Shrinkage Cracking on the Corrosion of Reinforced Concrete to Improve Service Life Prediction

机译:量化塑性收缩裂纹对钢筋混凝土腐蚀的影响,以改善使用寿命预测

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摘要

Several service-life modeling approaches have been advocated for performance prediction of reinforced concrete structures. However, they are commonly developed based on the assumption that no premature cracks exist in structure. In field applications, plastic shrinkage cracking may occur, which could substantially influence modeling assumptions and prediction reliability. Experiment is designed to investigate the impact of plastic shrinkage cracking on the corrosion of steel reinforcement. Plastic cracks were quantitatively assessed using image analysis. The slabs with premature cracking are then exposed to wetting/drying cycles for corrosion test. The width of surface cracks and the concrete cover thickness are correlated to the time-to-corrosion initiation measurements. Experimental results show that the size and distribution of plastic shrinkage cracks that are developed in an end restrained slab are influenced by fiber type, fiber volume, and concrete cover thickness. A reduction in crack width always leads to a delayed corrosion initiation time, while a reasonable cover thickness combines with the reduction in surface crack width may significantly improve corrosion resistance. Fiber reinforcement can substantially delay the corrosion initiation time.
机译:有人提出了几种使用寿命建模方法来预测钢筋混凝土结构的性能。然而,它们通常是基于这样的假设而开发的:结构中不存在过早的裂缝。在现场应用中,可能会发生塑性收缩裂纹,这可能会严重影响建模假设和预测可靠性。实验旨在研究塑性收缩裂纹对钢筋腐蚀的影响。使用图像分析定量评估塑性裂纹。然后将具有过早开裂的板坯进行润湿/干燥循环以进行腐蚀测试。表面裂纹的宽度和混凝土覆盖层的厚度与开始腐蚀的时间相关。实验结果表明,端部约束平板中产生的塑性收缩裂缝的大小和分布受纤维类型,纤维体积和混凝土覆盖层厚度的影响。裂纹宽度的减小总是导致腐蚀开始时间的延迟,而合理的覆盖层厚度与表面裂纹宽度的减小相结合可以显着提高耐腐蚀性。纤维增强会大大延迟腐蚀的开始时间。

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