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Enhanced corrosion protection of reinforcement steel with nanomaterial incorporated fly ash based cementitious coating

机译:用纳米材料掺入的粉煤灰基胶粘涂层增强钢筋腐蚀保护

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摘要

This work evaluated the performance of a novel nanophase modified fly ash based cement polymer coating over steel reinforcements in a corrosive environment. Five types of coatings were prepared with 100 wt. % Ordinary Portland Cement (CC), OPC replaced with 40 wt. % fly ash (CF), and CF admixed with 2 wt. % nano-CaCO3 (CFC), nano-SiO2 (CFS) and nano-ZrO2 (CFZ). Electrochemical studies were carried out under exposure to chlorides and the long term performance was evaluated by impressed voltage test. The microstructure of the developed coatings and chemical composition of corrosion products were analyzed using SEM, XRD, and LRS. The instantaneous corrosion rates of CFC, CFS, and CFZ coated rebars were found to be notably lower than CF coated rebars. The accelerated studies using impressed voltage test indicated a significantly longer initiation time for cracking in nanomaterials incorporated coatings than the conventional cement polymer coating. The evaluation of electrochemical parameters like open circuit potential, corrosion current, and polarization resistance showed that the addition of nano-ZrO2 significantly enhanced the corrosion performance of cementitious coatings as compared to other nanomaterials owing to its better dispersibility, without aggregation in cementitious product, which was further confirmed from the particle size distribution measurement using dynamic light scattering technique. The XRD patterns and laser Raman spectra results confirm negligible corrosion products on CFZ coated rebars. The visual inspection of rust formation and weight loss measurements of CFZ coated rebars, subjected to salt spray and chemical resistance tests corroborated its long term durability in chloride-rich environment. Our results suggest the important benefits of nanomaterial incorporated fly ash cementitious coating on rebars in corrosion protection. (C) 2020 Elsevier Ltd. All rights reserved.
机译:该作品评估了一种在腐蚀性环境中的钢筋增强剂上的新型纳米级改性粉煤灰基水泥聚合物涂层的性能。用100重量%制备五种涂层。 %普通波特兰水泥(CC),OPC用40重量替换。 %粉煤灰(CF),CF与2重量加混合。 %纳米CaCO 3(CFC),纳米SiO 2(CFS)和纳米ZrO2(CFZ)。在暴露于氯化物下进行电化学研究,通过压印电压测试评估长期性能。使用SEM,XRD和LRS分析腐蚀产物的显影涂层和化学成分的微观结构。发现CFC,CFS和CFZ涂层钢筋的瞬时腐蚀速率明显低于CF涂层钢筋。利用压印电压测试的加速研究表明,在纳米材料中掺入涂层的裂解显着更长的开始时间,而不是传统的水泥聚合物涂层。电化学参数等电化学参数如开路电位,腐蚀电流和偏振电阻表明,与其他纳米材料相比,纳米ZrO2的加入显着提高了水泥涂层的腐蚀性能,而由于其更好的分散性,而不是胶质产品的聚集,这通过使用动态光散射技术进一步从粒度分布测量中确认。 XRD模式和激光拉曼光谱结果确认CFZ涂层钢筋上可忽略不计的腐蚀产品。 CFZ涂层钢筋的锈地形成和减肥测量的目视检查,进行盐雾和耐化学性试验,其在富含氯化物环境中的长期耐久性。我们的研究结果表明,纳米材料掺入粉煤灰水泥涂层对钢筋腐蚀保护的重要益处。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Construction and Building Materials》 |2021年第15期|122130.1-122130.16|共16页
  • 作者单位

    IGCAR Corros Sci & Technol Div Met & Mat Grp MCG Kalpakkam 603102 Tamil Nadu India|Govt Coll Technol Dept Struct Engn Coimbatore 641013 Tamil Nadu India;

    IGCAR Corros Sci & Technol Div Met & Mat Grp MCG Kalpakkam 603102 Tamil Nadu India;

    IGCAR Corros Sci & Technol Div Met & Mat Grp MCG Kalpakkam 603102 Tamil Nadu India|Homi Bhabha Natl Inst Mumbai 600094 Maharashtra India;

    IGCAR Corros Sci & Technol Div Met & Mat Grp MCG Kalpakkam 603102 Tamil Nadu India;

    IGCAR Corros Sci & Technol Div Met & Mat Grp MCG Kalpakkam 603102 Tamil Nadu India;

    IGCAR Corros Sci & Technol Div Met & Mat Grp MCG Kalpakkam 603102 Tamil Nadu India|Homi Bhabha Natl Inst Mumbai 600094 Maharashtra India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Coatings; Fly ash; Nano-phase modification; Corrosion; Reinforcements;

    机译:涂料;粉煤灰;纳米相改性;腐蚀;增援;
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