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Chloride Diffusion Models for Type Ⅴ and Silica Fume Cement Concretes

机译:Ⅳ型和二氧化硅烟水泥混凝土氯化物扩散模型

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One of several methods used to minimize reinforcement corrosion is the use of service-life prediction models to calculate mixture design and construction variables for the desired service life of a structure. Although several models are available for this purpose, very few incorporate the effect of environmental temperature on chloride diffusion. Moreover, most of the earlier studies were conducted under laboratory conditions and they are not based on actual field data. In the reported study, chloride diffusion in Type V and silica fume cement concretes was evaluated under laboratory and field conditions. Large-size concrete specimens were exposed in the tidal zone of a marine exposure site for 1, 2, 5, and 10 years while the laboratory specimens were exposed to a chloride solution maintained at 22, 35, 50, and 60°C (71.6, 95, 122, and 140℉)for 1 year. The coefficient of chloride diffusion (D_a) for Type V cement concrete specimens placed in the field was noted to be much more than that of silica fume cement concrete specimens at all exposure periods. However, the D_a for both Type V and silica fume cement concrete specimens decreased by 1.3 to 3 times with increasing period of exposure. The D_a for the laboratory concrete specimens increased by 2.2 to 3.8 times as the exposure temperature was increased from 22 to 60°C (71.6 to 140℉). Furthermore, the D_a for Type V cement concrete specimens was 2.9 to 5 times more than that of silica fume cement concrete specimens. Empirical models correlating the field and laboratory data were developed. These models could be useful for calculating the D_a for field conditions from the laboratory data.
机译:用于最小化增强腐蚀的几种方法之一是使用使用寿命预测模型来计算用于结构的所需使用寿命的混合设计和施工变量。虽然有几种型号可用于此目的,但很少少数掺入环境温度对氯化物扩散的影响。此外,大多数早期研究都在实验室条件下进行,而不是基于实际现场数据。在据报道的研究中,在实验室和现场条件下评估V和二氧化硅烟水泥混凝土混凝土中的氯化物扩散。在海洋暴露部位的潮汐区暴露于1,2,5和10年的大尺寸混凝土样本,同时将实验室标本暴露于保持在22,35,50和60℃(71.6的氯化物溶液中(71.6 ,95,122和140‰)为1年。载入该领域的V型水泥混凝土样品的氯化物扩散系数(D_A)得到了所有暴露时段的大于二氧化硅烟水泥混凝土样本的大。然而,随着曝光时间的增加,V型和二氧化硅烟气水泥混凝土样品的D_A减少了1.3〜3倍。实验室混凝土试样的D_A增加2.2〜3.8倍,因为曝光温度从22℃增加到60℃(71.6至140℃)。此外,V型水泥混凝土样本的D_A比二氧化硅烟水泥混凝土样本的29%至5倍。开发了相关领域和实验室数据的实证模型。这些模型可用于计算来自实验室数据的现场条件的D_A。

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