暴露在海洋环境中的白色混凝土幕墙的变化分析——以Cádiz(西班牙)为例

IF 1.4 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
V. Flores-Alés, F. J. Alejandre, F. Blasco-López, M. Torres-González, J. M. Alducin-Ochoa
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引用次数: 1

摘要

本研究分析了位于Cádiz(西班牙)的白色混凝土建筑的立面。立面上的许多混凝土包层已经脱落,钢筋锈蚀的迹象很明显。为了本研究的目的,采用地质雷达(GPR)对加固的布置进行了评估。提取直径为10 cm,深度为15-18 cm的圆柱形混凝土芯,并对其碳酸化前缘进行评估。通过物性测定对样品进行表征;化学和矿物学分析和氯化物渗透剖面。根据所得结果,所使用的混凝土可认为具有渗透性和多孔性(16.5-19.7%)。根据西班牙现行法规,只有两个采样点符合此类环境暴露的最低加固涂层要求。碳酸化锋面已经到达增援部队,造成他们的钝化。根据farade的方向,观察到海洋喷雾中氯化物的渗透性最大值为水泥重量的0.250%,而没有达到耐久性的极限状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of alterations presented in a white-concrete façade exposed to a marine environment——A case study in Cádiz (Spain)
This study analyses the façades of a white concrete building located in Cádiz (Spain). Numerous sections of the concrete cladding on the façades have become detached and there are clear signs of reinforcement corrosion. For the purposes of this study, the arrangement of the reinforcement was evaluated by georadar (GPR). Cylindrical concrete cores measuring 10 cm in diameter by 15–18 cm in depth were extracted and their carbonation front was evaluated. Samples were characterized by physical properties determination; chemical and mineralogical analysis and the chloride penetration profiles. According to the results obtained, the concrete used can be considered permeable and porous (16.5–19.7%). Only two sampling points fulfilled the minimum reinforcement coating requirements for this type of environmental exposure, in accordance with current Spanish legislation. The carbonation fronts have reached the reinforcements, causing their depassivation. Depending on the orientation of the façade, the penetration of chlorides from marine spray was observed with a maximum value of 0.250% by weight of cement, without reaching the limit states of durability.
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来源期刊
AIMS Materials Science
AIMS Materials Science MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
3.60
自引率
0.00%
发文量
33
审稿时长
4 weeks
期刊介绍: AIMS Materials Science welcomes, but not limited to, the papers from the following topics: · Biological materials · Ceramics · Composite materials · Magnetic materials · Medical implant materials · New properties of materials · Nanoscience and nanotechnology · Polymers · Thin films.
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