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Applications of electricity in the rehabilitation and health monitoring of concrete structures.

机译:电力在混凝土结构修复和健康监测中的应用。

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摘要

The dissertation research work presented herein consists of two separate findings: one investigates a potential new coating technique that could be used to rehabilitate deteriorated concrete sewer pipes, and the other researches inducing electrical conductivity into geopolymer concrete to serve as smart material by being able to sense stress changes. Both applications utilize electricity to enhance the performance and/or functionality of hardened cementitious materials.;Microbiologically induced corrosion (MIC) in concrete wastewater conveyance systems is a leading deterioration mechanism in such structures. This work focuses on breaking the MIC cycle by preventing colonization of the bacteria responsible for converting hydrogen sulfide to sulfuric acid. Electrokinetics was used to drive an antimicrobial agent (cuprous oxide) into the porous wall surface of a pre-cast concrete pipe. An electric potential difference applied between the steel reinforcement embedded in the concrete and a copper electrode placed in the coating solution provides the driving force to the copper ions. Atomic absorption tests performed on the coated specimens were used to determine the percentage of cuprous oxide that penetrated the porous surface and migrated into the hardened concrete matrix. A pilot study conducted on three mock pipe specimens demonstrated that the process is effective on partially corroded and non-corroded pipes. Test data also revealed that the amount of copper that migrated into the concrete matrix is time dependent. Based on the preliminary test results, a treatment procedure was designed and implemented on a 15" diameter commercial pre-cast concrete pipe. The data suggest that the method could be reemployed to "immunize" new and partially deteriorated steel reinforced concrete pipes against MIC.;Geopolymer concrete is finding a growing number of niche applications in the field of civil engineering due to its high compressive strength, strength gain rate, fire resistance, maintenance of structural properties in elevated temperature environments, chemical stability in highly acid environments, and relatively low cost and environmental benefits. Electrically conductive geopolymer could serve as a new smart material that could monitor its own health. Typically, health monitoring in structures is done by assessing their state of stress. One such method involves monitoring electrical resistance variations as an indirect indication of the stress variations in the structure. Carbon fibers were added to a fresh geopolymer mix to enhance its electrical conductivity. AC-impedance spectroscopy analysis was performed on sample specimens to obtain their electrical resistance. Results from the preliminary phases demonstrated that geopolymer exhibits superior performance to OPC-made concrete as a conductor of electrical current. Conductive geopolymer concrete specimens containing an optimum percentage of carbon fibers were dynamically loaded to observe the changes in electrical resistance. Data obtained from the dynamic test suggests that conductive geopolymer could serve as a smart material.
机译:本文提出的论文研究工作包括两个独立的发现:一个研究了一种潜在的新涂层技术,该技术可用于修复老化的混凝土下水道;另一研究通过感应能够将电导率引入地质聚合物混凝土中以用作智能材料压力变化。两种应用都利用电力来增强硬化的胶凝材料的性能和/或功能。混凝土废水输送系统中的微生物诱导腐蚀(MIC)是此类结构中的主要劣化机理。这项工作的重点是通过防止负责将硫化氢转化为硫酸的细菌定殖来打破MIC循环。电动势用于将抗菌剂(氧化亚铜)驱入预制混凝土管的多孔壁表面。埋在混凝土中的钢筋与放置在涂料溶液中的铜电极之间施加的电势差为铜离子提供了驱动力。使用在涂层样品上进行的原子吸收测试来确定渗透到多孔表面并迁移到硬化混凝土基质中的氧化亚铜的百分比。在三个模拟管道样本上进行的一项初步研究表明,该过程对部分腐蚀和未腐蚀的管道均有效。测试数据还显示,迁移到混凝土基质中的铜量与时间有关。根据初步测试结果,设计并处理了直径为15英寸的商用预制混凝土管。该数据表明,可以重新使用该方法对MIC进行“免疫”的新型和部分老化的钢筋混凝土管。 ;由于高抗压强度,强度增加率,耐火性,在高温环境下保持结构特性,在高酸环境下的化学稳定性以及相对较低的含量,地聚合物在土木工程领域正在发现越来越多的利基应用。成本和环境效益:导电地聚合物可以用作监测自身健康的新型智能材料,通常,结构的健康监测是通过评估其应力状态来完成的,其中一种方法是监测电阻的变化,以此间接指示其健康状况。在结构中的应力变化。碳纤维被添加到新鲜的地质聚合物混合物以增强其导电性。对样品样品进行交流阻抗谱分析,以获得其电阻。初步阶段的结果表明,地质聚合物表现出优于OPC制混凝土作为电流导体的性能。动态加载含有最佳百分比碳纤维的导电地聚合物混凝土样品,以观察电阻的变化。从动态测试获得的数据表明,导电地聚合物可以用作智能材料。

著录项

  • 作者

    Vaidya, Saiprasad.;

  • 作者单位

    Louisiana Tech University.;

  • 授予单位 Louisiana Tech University.;
  • 学科 Engineering Civil.;Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 116 p.
  • 总页数 116
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;无线电电子学、电信技术;
  • 关键词

  • 入库时间 2022-08-17 11:37:54

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