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Water Sorptivity of Steam Cured Concrete For Railway Precast Elements at Early Ages

机译:早期蒸汽固化混凝土对铁路预制构件的吸水率

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Water absorption is closely related to the durability of concrete. To determine the effect of steam curing on water absorption of concrete at early ages, this paper investigated the water absorption of concrete which had different compositions of cementitious materials under three types of technological measures condition (technology A, B and C), and performed water absorption comparisons of various types of concrete by cutting the specimens into three slices: top-level, internal, and bottom. Results indicate that the water absorption of all specimens appears to be gradient distribution from top-level to bottom, and top-level specimens have the highest water absorption. However, in terms of water absorption, there is no significant difference among the other layers. The highest water absorption value is achieved by the top-level of concrete with technology A, which is 42% higher than that of its mid-level. However, the water absorption of top-level, mid-level, and bottom layer of various concretes with technology B and C are all decreased, especially the concretes incorporating admixture A with technology C.The differential value of water absorption between the top-level and mid-level is 3%~18% commonly. By use of suitable technological measures and admixtures, the harm of steam curing on the surface structure of concrete will be alleviated, and the inhomogeneity of the internal concrete can be improved.
机译:吸水率与混凝土的耐久性密切相关。为了确定蒸汽固化对早期混凝土吸水率的影响,本文研究了在三种技术措施条件(技术A,B和C)下具有不同胶凝材料成分的混凝土的吸水率,并进行了水处理。通过将试样切成三层来对各种类型的混凝土进行吸收比较:顶层,内部和底部。结果表明,所有样品的吸水率似乎是从顶部到底部的梯度分布,并且顶部样品的吸水率最高。但是,就吸水率而言,其他各层之间没有显着差异。最高吸水值是通过采用A技术的顶级混凝土实现的,比中级混凝土高42%。但是,采用B和C技术的各种混凝土的顶层,中层和底层的吸水率均下降,尤其是掺有掺和剂A和C技术的混凝土。中级水平通常为3%〜18%。通过使用适当的技术措施和掺合料,可以减轻蒸汽养护对混凝土表面结构的危害,并可以改善内部混凝土的不均匀性。

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