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Field performance of plain and blended cement concretes in marine environments.

机译:普通和混合水泥混凝土在海洋环境中的现场性能。

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摘要

Concrete is the most versatile construction material in the world today. It is estimated that approximately 50% of the expenditure in the construction industry is spent on repair and rehabilitation of the existing structures in aggressive environmental conditions. This implies a need to study the reasons for its deterioration and make the necessary changes required.;A marine environment is the condition prevailing in and in the vicinity of an ocean or sea. Coastal areas, which can be characterized to have a marine climate, reach normally some 10 km from the coastline, due to wind-blown salt mist. The study of concrete in this environment deserves special attention due to the nature of deterioration.;The present research was conducted to evaluate the performance of plain and reinforced concrete specimens exposed to the marine environment at Khaleej Mardomah research centre, Jubail Industrial city, Saudi Arabia, for a period of five years. The exposure conditions included: tidal, belowground, and aboveground zones. The mix variables included: cement content, water to cementitious materials ratio, mixing and curing water and type of curing. The different materials under the study included Type I and Type V cements, blended cements, additives, corrosion inhibitors, curing compounds and coal tar epoxy. The effect of exposure conditions on the performance of the selected mixes was evaluated by assessing the mechanical properties and morphological/mineralogical changes.;Deterioration was the highest in the specimens placed in the tidal zone, followed by the ones in belowground and aboveground zones. The data obtained were analyzed to rank the performance of the investigated mixes in tidal, below ground and above ground zones. Based on the results, the following cement concrete mixes are recommended: (a) Tidal zone: 70% ground granulated blast furnace slag or 10% super-pozz. (b) Below ground zone: 8% silica fume with 0.3 w/cm ratio. (c) Above ground zone: 8% silica fume with 0.3 w/cm ratio, or 8% silica fume or 20% fly ash.
机译:混凝土是当今世界上用途最广泛的建筑材料。据估计,建筑业的大约50%的支出用于在恶劣的环境条件下维修和修复现有结构。这意味着有必要研究其恶化的原因并进行必要的更改。;海洋环境是海洋中或附近普遍存在的条件。沿海地区由于风吹盐雾,通常具有海洋性气候,通常距离海岸线约10公里。由于变质的性质,在这种环境下对混凝土的研究值得特别关注。;本研究是在沙特阿拉伯朱拜勒工业城的Khaleej Mardomah研究中心对暴露于海洋环境的普通和钢筋混凝土试样的性能进行评估的。 ,为期五年。暴露条件包括:潮汐区,地下和地下区域。混合变量包括:水泥含量,水与胶凝材料的比例,混合和固化水以及固化类型。研究中的不同材料包括I型和V型水泥,混合水泥,添加剂,缓蚀剂,固化剂和煤焦油环氧树脂。通过评估机械性能和形态/矿物学变化来评估暴露条件对所选混合物性能的影响。潮汐区放置的标本中劣化程度最高,其次是地下和地上区。对获得的数据进行分析,以对所研究混合物在潮气,地下和地面以上区域的性能进行排名。根据结果​​,建议使用以下水泥混凝土混合料:(a)潮气区:70%的粒状高炉矿渣或10%的超级水渣。 (b)地下区域:8%的硅粉,比例为0.3 w / cm。 (c)地上区域:8%的硅粉,比例为0.3 w / cm,或8%的硅粉或20%的粉煤灰。

著录项

  • 作者

    Syed, Osmanuddin Adil.;

  • 作者单位

    King Fahd University of Petroleum and Minerals (Saudi Arabia).;

  • 授予单位 King Fahd University of Petroleum and Minerals (Saudi Arabia).;
  • 学科 Engineering Civil.;Engineering Marine and Ocean.
  • 学位 M.S.
  • 年度 2007
  • 页码 366 p.
  • 总页数 366
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;海洋工程;
  • 关键词

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