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首页> 外文期刊>Journal of advanced concrete technology >Long-term Material Properties of a Thick Concrete Wall Exposed to Ordinary Environmental Conditions in a Nuclear Reactor Building: the Contribution of Cement Hydrates and Feldspar Interaction
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Long-term Material Properties of a Thick Concrete Wall Exposed to Ordinary Environmental Conditions in a Nuclear Reactor Building: the Contribution of Cement Hydrates and Feldspar Interaction

机译:核反应堆建筑物中普通环境条件下的厚混凝土墙的长期材料性能:水泥水合物和长石相互作用的贡献

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摘要

A variation of material properties with depth is observed in a massive, seismic-resistant internal wall of Unit 1 of the Hamaoka Nuclear Power Plant (NPP) 45 years after its construction. The maximum values are attained in the center of the structural element and gradually decrease towards the surface, while still well exceeding the required performance. It is found that this trend can be mostly attributed to the reaction between cement hydrates and rock-forming minerals of a feldspar group, which releases silica and alumina oxides into the pore solution, where they react with portlandite to form new hydrates. No evidence of expansive distress similar to the alkali-silica reaction (ASR) is found in the material, owing to this reaction. Possible implications for the aging management of existing concrete structures are discussed.
机译:滨冈核电站(NPP)建造后45年,在一块巨大的抗震内壁中观察到了材料特性随深度的变化。最大值在结构元素的中央达到,并逐渐向表面减小,同时仍大大超出了所需的性能。发现这种趋势主要归因于水泥水合物与长石族岩石形成矿物之间的反应,该反应将二氧化硅和氧化铝释放到孔隙溶液中,在其中它们与硅酸盐反应形成新的水合物。由于该反应,在该材料中没有发现类似于碱-二氧化硅反应(ASR)的膨胀窘迫的迹象。讨论了对现有混凝土结构老化管理的可能含义。

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