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首页> 外文期刊>Cement & concrete composites >Comparison of carbonation depths measured on in-field exposed existing r.c. structures with predictions made using fib-Model Code 2010
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Comparison of carbonation depths measured on in-field exposed existing r.c. structures with predictions made using fib-Model Code 2010

机译:在野外暴露的现有r.c中测得的碳化深度的比较使用fib-Model Code 2010进行预测的结构

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摘要

The jib-Model Code for Service Life Design, which is referenced within Model Code 2010, considers different deterioration mechanisms of concrete structures. In particular, it proposes a physical model for the assessment of the carbonation depth in time, which, for existing structures, requires data, such as the type of cement and the water-to-cement ratio of the concrete, that are often unavailable. In the paper the theoretical results obtained with the fib-model are discussed and compared with experimental data obtained during an extensive campaign carried out on cast-in-place uncracked concretes of in-field exposed existing r.c. structures from a highway infrastructure. This comparison has highlighted the key role played not only by the environment, but also by the quality of the concrete through the inverse effective carbonation resistance of concrete, R~(-1)_(NAC,0) evolution of the carbonation depth in time. The direct measurements of the carbonation depth on existing r.c. structures allows the inverse effective carbonation resistance of concrete to be determined and correlated to the concrete mean compressive strength at 28 days obtained from compressive tests on cores taken from the investigated structures.
机译:在标准代码2010中引用的“使用寿命设计的短臂模型代码”考虑了混凝土结构的不同劣化机制。特别是,它提出了一个用于评估碳化深度的物理模型,对于现有结构,该模型需要通常无法获得的数据,例如水泥的类型和混凝土的水灰比。在本文中,讨论了用fib模型获得的理论结果,并将其与在现场对裸露的现存钢筋混凝土的现浇未开裂混凝土进行广泛研究期间获得的实验数据进行了比较。公路基础设施的结构。这种比较突出了关键作用,它不仅起环境作用,而且还起着混凝土的作用,具体起反作用是混凝土的有效抗碳化性,R〜(-1)_(NAC,0)随碳化深度的变化而变化。 。在现有r.c上直接测量碳化深度结构可以确定混凝土的抗有效碳化强度,并将其与通过对研究结构进行的岩心压缩试验获得的28天混凝土平均抗压强度相关。

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