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Durability of glass fiber/vinyl ester composites as bridge deck subject to weathering conditions.

机译:玻璃纤维/乙烯基酯复合材料作为桥面板的耐候性受气候条件的影响。

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摘要

The deterioration and functional deficiency of existing bridge infrastructure represent one of most significant challenges currently facing civil engineering community. Due to the unique combinations of high specific strength and stiffness, ease of construction, corrosive resistance and reduced maintenance costs, the FRP bridge deck systems are considered to be favorable substitutes for the deteriorating bridge decks. Since the applications of FRP composites for bridge deck under consideration all involve the exposure of the composite to moisture and thermal cycle, it is critical that a mechanistic understanding of materials response be developed at the fundamental level while simultaneously allowing for the development of models not just for the prediction of property changes with time but also for determination of remaining service life of a structure.; This research presents results of an investigation into the durability of E-glass/Vinyl ester composites exposed to a series of controlled environments in an attempt to understand the primary mechanisms and rates of degradation, prior to considering complex regimes such as of indeterminate changes in humidity, temperature cycles, and exposure to other solvents, as would be expected in the field. First, this research presents development of a durability testing procedure for FRP composites bridge deck materials. This procedure has considered the unique characteristics of the intended application, including materials property variations, mechanical loading, and freeze/thaw cycling in water and salt water. Then, results from laminate theory analysis and extensive testing on laminates as a function of freeze-thaw cycle and moisture are presented which provide insight into how material properties vary with freeze-thaw cycle and moisture and form the inputs necessary to evaluate composite strength and damage models.; To allow for sufficiently generalized descriptions of life, credible simulations that accurately describe the combination of synergism of load and environment must be used to ensure practical and efficient design guidelines for durability. A two-step finite element computation approach was used to perform mathematical modeling and analysis of the entire complex FRP composite bridge superstructures. The durability composite materials models are combined with finite element analysis to yield a general analysis procedure for predicting the long-term deformation and residual strength response of FRP sandwich deck subjected to environmental exposure. The durability finite element model predictions are compared with the laboratory testing and in-field testing results, giving good agreement.
机译:现有桥梁基础设施的恶化和功能缺陷是土木工程界当前面临的最重大挑战之一。由于高比强度和刚度,易于施工,耐腐蚀和降低维护成本的独特组合,FRP桥面板系统被认为是恶化的桥面板的有利替代品。由于正在考虑的FRP复合材料在桥梁桥面的应用都涉及到复合材料暴露于湿气和热循环中,因此至关重要的是,从根本上发展对材料响应的机械理解,同时允许开发模型,而不仅仅是用于预测随时间变化的特性,还用于确定结构的剩余使用寿命。这项研究提出了对暴露于一系列受控环境下的电子玻璃/乙烯基酯复合材料耐久性的调查结果,目的是在考虑复杂的条件(例如不确定的湿度变化)之前,了解其主要降解机理和降解速率。 ,温度循环以及暴露在其他溶剂中,这在本领域中是可以预期的。首先,这项研究提出了FRP复合材料桥面板材料耐久性测试程序的开发。此过程已考虑了预期应用程序的独特特征,包括材料特性变化,机械负荷以及在水和盐水中的冻融循环。然后,介绍了层压板理论分析和对层压板进行广泛测试的结果,这些结果是冻融循环和水分的函数,可提供有关材料特性如何随冻融循环和水分变化的见解,并形成评估复合材料强度和损伤所必需的输入楷模。;为了对寿命进行足够概括的描述,必须使用准确描述负载和环境协同作用的可靠模拟来确保实用且有效的耐用性设计准则。采用两步有限元计算方法对整个复杂的FRP复合桥上部结构进行数学建模和分析。耐久性复合材料模型与有限元分析相结合,以产生一种通用的分析程序来预测FRP夹芯板在环境暴露下的长期变形和残余强度响应。将耐久性有限元模型预测结果与实验室测试和现场测试结果进行比较,得出了很好的一致性。

著录项

  • 作者

    Yan, An.;

  • 作者单位

    Wayne State University.;

  • 授予单位 Wayne State University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 224 p.
  • 总页数 224
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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