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Evaluation of multiple corrosion protection systems and corrosion inhibitors for reinforced concrete bridge decks.

机译:钢筋混凝土桥面板的多种腐蚀防护系统和腐蚀抑制剂的评估。

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摘要

The corrosion performance of different corrosion protection systems is evaluated using the mortar-wrapped rapid macrocell test, bench-scale tests (the Southern Exposure, cracked beam, and ASTM G109 tests), and field tests. The systems include conventional steel with three different corrosion inhibitors (DCI-S, Hycrete, and Rheocrete), epoxy-coated reinforcement with three different corrosion inhibitors and ECR with a primer coating containing microencapsulated calcium nitrite, multiple-coated reinforcement with a zinc layer underlying an epoxy coating, ECR with zinc chromate pretreatment before application of the epoxy coating to improve adhesion between the epoxy and the underlying steel, ECR with improved adhesion epoxy coatings, and pickled 2205 duplex stainless steel. Conventional steel in concretes with two different water-cement ratios (0.45 and 0.35) is also tested. Of these systems, specimens containing conventional steel or conventional epoxy-coated steel serve as controls. The critical chloride thresholds of conventional steel in concrete with different corrosion inhibitors and zinc-coated reinforcement are determined. The results of the tests are used in an economic analysis of bridge decks containing different corrosion protection systems over a design life of 75 years.;The results indicate that a reduced water-cement ratio improves the corrosion resistance of conventional steel in uncracked concrete compared to the same steel in concrete with a higher water-cement ratio. The use of a corrosion inhibitor improves the corrosion resistance of conventional steel in both cracked and uncracked concrete and delays the onset of corrosion in uncracked concrete, but provides only a very limited improvement in the corrosion resistance of epoxy-coated reinforcement due to the high corrosion resistance provided by the epoxy coating itself. Based on results in the field tests, the epoxy-coated bars with a primer containing microencapsulated calcium nitrite show no improvement in the corrosion resistance compared to conventional epoxy-coated reinforcement.;Increased adhesion between the epoxy coating and reinforcing steel provides no improvement in the corrosion resistance of epoxy-coated reinforcement. The corrosion losses for multiple-coated reinforcement are comparable with those of conventional epoxy-coated reinforcement in the field tests in uncracked and cracked concrete. Corrosion potential measurements show that the zinc is corroded preferentially, providing protection for the underlying steel. Pickled 2205 stainless steel demonstrates excellent corrosion resistance, and no corrosion activity is observed for the pickled 2205 stainless steel in bridge decks, or in the SE, CB, or field test specimens after four years.;ECR, ECR with increased adhesion, and pickled 2205 stainless steel are the most cost-effective corrosion protection systems based on the economic analyses of a 216-mm (8.5-in.) thick bridge deck over a 75-year design life.;Key Words: chloride, concrete, corrosion, corrosion inhibitor, epoxy coatings, multiple corrosion protection systems, threshold, zinc-coated steel
机译:使用砂浆包裹的快速宏电池测试,台式测试(Southern Exposure,裂化梁和ASTM G109测试)和现场测试评估了不同腐蚀防护系统的腐蚀性能。该系统包括具有三种不同缓蚀剂(DCI-S,Hycrete和Rheocrete)的常规钢,具有三种不同缓蚀剂的环氧涂层增强材料和具有包含微囊化亚硝酸钙的底漆涂层的ECR,位于其下的锌层的多层涂层增强材料环氧涂层,在涂覆环氧涂层以改善环氧与底层钢之间的附着力之前,先进行铬酸锌预处理的ECR,具有改善的附着力环氧涂层的ECR和酸洗2205双相不锈钢。还测试了具有两种不同水灰比(0.45和0.35)的混凝土中的常规钢。在这些系统中,包含常规钢或常规环氧涂层钢的样品用作对照。确定了具有不同腐蚀抑制剂和镀锌增强层的混凝土中常规钢的临界氯化物阈值。测试结果用于包含75年设计寿命的包含不同腐蚀防护系统的桥面板的经济分析;结果表明,与未开裂的混凝土相比,降低水灰比可提高常规钢的抗腐蚀性在水灰比较高的混凝土中使用相同的钢。腐蚀抑制剂的使用提高了开裂和未开裂混凝土中常规钢的耐腐蚀性,并延迟了未开裂混凝土中腐蚀的开始,但是由于高腐蚀,环氧涂层增强材料的耐腐蚀性仅得到非常有限的改善。环氧涂料本身提供的电阻。根据现场测试的结果,与传统的环氧涂层增强材料相比,带有微囊化亚硝酸钙底漆的环氧涂层棒材的耐腐蚀性没有改善。;环氧涂层与增强钢之间的附着力增加,其耐腐蚀性没有改善。环氧涂层增强材料的耐腐蚀性。在未开裂和开裂的混凝土的现场测试中,多层涂层钢筋的腐蚀损失与常规环氧涂层钢筋的腐蚀损失相当。腐蚀电位测量表明,锌被优先腐蚀,从而为基础钢提供保护。腌制的2205不锈钢表现出优异的耐腐蚀性,四年后在桥面甲板或SE,CB或现场测试样品中,腌制的2205不锈钢均未观察到腐蚀活性; ECR,ECR具有增加的附着力和腌制基于对216毫米(8.5英寸)厚的桥面板在75年的设计寿命中的经济分析,2205不锈钢是最具成本效益的腐蚀防护系统。关键词:氯化物,混凝土,腐蚀,腐蚀抑制剂,环氧涂料,多种腐蚀防护系统,阈值,镀锌钢

著录项

  • 作者

    Xing, Lihua.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Engineering Civil.
  • 学位 D.Eng.
  • 年度 2010
  • 页码 508 p.
  • 总页数 508
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:24

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