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Permeation Properties and Pore Structure of Surface Layer of Fly Ash Concrete

机译:粉煤灰混凝土表层的渗透性能与孔结构。

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This paper presents an experimental study on the nature of permeation properties and pore structure of concrete surface layers containing fly ash. Concretes containing different dosages of fly ash as a replacement for cement (15% and 30% by weight of total cement materials, respectively) were investigated. Concrete without any fly ash added was also employed as the reference specimen. Laboratory tests were conducted to determine the surface layer properties of concrete including chloride transport, apparent water permeability and pore structure. The results demonstrate that incorporation of fly ash, for the early test period, promotes the chloride ingress at the surface layer of concrete but substituting proportions of fly ash may have little impact on it. With the process of chloride immersion, the chloride concentration at the surface layer of concrete with or without fly ash was found to be nearly the same. In addition, it is suggested that the water permeability at the concrete surface area is closely related to the fly ash contents as well as the chloride exposure time. Pore structure was characterized by means of mercury intrusion porosimetry (MIP) test and the scanning electron microscopy (SEM) images. The modification of pore structure of concrete submersed in distilled water is determined by the pozzolanic reaction of fly ash and the calcium leaching effect. The pozzolanic reaction was more dominant at the immersion time of 180 days while the calcium leaching effect became more evident after 270 days.
机译:本文对含粉煤灰的混凝土表层渗透性能和孔结构性质进行了实验研究。研究了含有不同粉煤灰替代水泥(分别占水泥总重量的15%和30%)的混凝土。未添加任何粉煤灰的混凝土也用作参考样本。进行了实验室测试,以确定混凝土的表层特性,包括氯化物的传输,表观水渗透性和孔结构。结果表明,在测试的早期阶段掺入粉煤灰可促进混凝土表层的氯化物进入,但取代粉煤灰的比例对其影响不大。通过浸入氯化物的过程,发现有或没有飞灰的混凝土表层的氯化物浓度几乎相同。另外,建议混凝土表面的水渗透率与粉煤灰含量以及氯化物暴露时间密切相关。孔结构通过压汞法(MIP)测试和扫描电子显微镜(SEM)图像表征。粉煤灰的火山灰反应和钙的浸出效果决定了浸入蒸馏水中的混凝土孔结构的改变。浸泡时间为180天时,火山灰反应占主导地位,而270天后,钙的浸出作用变得更明显。

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