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Carbonation resistance of concrete: limestone addition effect

机译:混凝土的抗碳化性:石灰石的添加作用

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Systematic analysis and evaluation of experimental results on carbonation and carbonation-induced corrosion resistance of concrete made with Portland limestone cement (PLC) are presented; these results have been extracted from 143 globally published studies in the literature since 1986, by 274 researchers from 131 institutions and 34 countries, and yielding a 19 000 data matrix are presented. It is shown that the carbonation of concrete increases with increasing limestone content, within the range permitted by standard BS EN 197-1: 2011. This effect, however, is less marked for concrete designed on an equal strength basis to the corresponding Portland cement (PC) concrete than concrete designed on an equal water/cement (w/c) basis. Eurocode 2 standard specifications for XC3 carbonation exposure for characteristic cube strength of concrete (or its w/c ratio) may need to be reviewed for the addition of limestone. Other influencing factors: curing, limestone fineness, total cement content, were also studied. A comparison has been conducted for the carbonation performance of concrete made with PLC and cement containing fly ash and ground granulated blast-furnace slag. Procedures to reduce the carbonation of PLC concrete are proposed. Response to accelerated carbonation, at 3-5% carbon dioxide concentration, of PLC concrete is similar to natural indoor exposure. A conversion factor of 1 week accelerated carbonation equal to 0.75 year natural indoor exposure was determined.
机译:提出了对波特兰石灰石水泥(PLC)制备的混凝土碳化和碳化诱导的耐腐蚀性试验结果的系统分析和评价。这些结果摘自1986年以来全球143个文献研究,来自131个机构和34个国家的274名研究人员,给出了1.9万个数据矩阵。结果表明,在标准BS EN 197-1:2011允许的范围内,混凝土的碳酸化程度随石灰石含量的增加而增加。但是,在与相应的波特兰水泥强度相同的基础上设计的混凝土,这种影响并不明显( PC)混凝土,而不是在相等的水/水泥(w / c)基础上设计的混凝土。对于XC3碳化暴露的欧洲规范2标准规范,应针对混凝土的特征立方强度(或其w / c比)进行审查,以添加石灰石。还研究了其他影响因素:固化,石灰石细度,总水泥含量。比较了用PLC制成的混凝土和含粉煤灰和磨细的高炉矿渣的水泥的碳化性能。提出了减少PLC混凝土碳化的方法。 PLC混凝土在二氧化碳浓度为3-5%时对加速碳化的响应与自然室内暴露相似。确定1周加速碳酸化的转化因子等于0.75年的自然室内暴露。

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