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Improving corrosion resistance of post-tensioned substructures emphasizing high performance grouts.

机译:改善后注浆子结构的耐腐蚀性,强调高性能灌浆。

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摘要

The use of post-tensioning in bridges can provide durability and structural benefits to the system while expediting the construction process. When post-tensioning is combined with precast elements, traffic interference can be greatly reduced through rapid construction. Post-tensioned concrete substructure elements such as bridge piers, hammerhead bents, and straddle bents have become more prevalent in recent years. Chloride induced corrosion of steel in concrete is one of the most costly forms of corrosion each year. Coastal substructure elements are exposed to seawater by immersion or spray, and inland bridges may also be at risk due to the application of deicing salts. Corrosion protection of the post-tensioning system is vital to the integrity of the structure because loss of post-tensioning can result in catastrophic failure.; Documentation for durability design of the grout, ducts, and anchorage systems is very limited. The objective of this research is to evaluate the effectiveness of corrosion protection measures for post-tensioned concrete substructures by designing and testing specimens representative of typical substructure elements using state-of-the-art practices in aggressive chloride exposure environments. This was accomplished through exposure testing of twenty-seven large-scale beam specimens and ten large-scale column specimens. High performance grout for post-tensioning tendon injection was also developed through a series of fresh property tests, accelerated exposure tests, and a large-scale pumping test to simulate field conditions.; A high performance fly ash grout was developed for applications with small vertical rises, and a high performance anti-bleed grout was developed for applications involving large vertical rises such as tall bridge piers. Long-term exposure testing of the beam and column specimens is ongoing, but preliminary findings indicate increased corrosion protection with increasing levels of post-tensioning, although traditional fully prestressed sections may not give as high a benefit to cost ratio as partially prestressed sections with high percentages of prestressing steel. Specimens with low permeable concrete are showing better corrosion protection than specimens with the standard concrete for bridge substructures used by the Texas Department of Transportation. Recommendations and guidelines for durable design of post-tensioned bridge substructures were developed from the findings to date, and supplementary information will be provided after final autopsy of all specimens.
机译:在桥梁中使用后张紧力可以为系统提供耐用性和结构优势,同时加快了施工过程。当后张拉与预制构件结合使用时,可通过快速施工大大减少交通干扰。近年来,后张拉的混凝土下部结构元素(例如桥墩,锤头弯曲和跨骑弯曲)变得越来越普遍。氯化物引起的钢筋在混凝土中的腐蚀是每年最昂贵的腐蚀形式之一。沿海下部结构元件通过浸泡或喷雾暴露在海水中,由于使用了除冰盐,内陆桥梁也可能处于危险之中。后张紧系统的腐蚀防护对于结构的完整性至关重要,因为后张紧的损失会导致灾难性的故障。灌浆,管道和锚固系统的耐用性设计文档非常有限。这项研究的目的是,通过在腐蚀性氯化物暴露环境中的最新实践,通过设计和测试代表典型子结构元素的标本,来评估后张拉混凝土子结构腐蚀防护措施的有效性。这是通过对27个大型梁样品和10个大型柱样品进行暴露测试来完成的。还通过一系列新的性能测试,加速暴露测试和大规模抽水测试来开发用于后张筋注射的高性能灌浆,以模拟田间条件。开发了一种高性能粉煤灰灌浆,用于垂直上升量较小的应用,而高性能防渗浆灌浆,则用于涉及大垂直上升量的应用,例如高桥墩。正在进行梁和柱标本的长期暴露测试,但是初步发现表明,随着后张紧程度的提高,腐蚀防护性能增强,尽管传统的完全预应力截面可能不如部分预应力截面具有较高的成本效益。预应力钢的百分比。低渗透性混凝土的标本比德州运输局使用的桥梁下部结构用标准混凝土的标本具有更好的防腐性能。从发现到现在,已经为后张拉桥梁子结构的持久设计提出了建议和指南,在对所有标本进行最终尸检后,将提供补充信息。

著录项

  • 作者

    Schokker, Andrea Jeanne.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Civil.; Engineering Marine and Ocean.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 314 p.
  • 总页数 314
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;海洋工程;工程材料学;
  • 关键词

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