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Durability based design of FRP jackets for seismic retrofit

机译:基于FRP护套的抗震加固设计

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摘要

Although FRP composites are increasingly being used for the rehabilitation of civil infrastructure, there is still a lack of well documented long-term durability data, and of design methodologies that explicitly consider effects of deterioration over time at a structural level. This paper provides results of an investigation aimed at assessing the effect of deterioration over time, at the materials level, on the effectiveness of FRP jackets used for seismic retrofit. Three different systems are investigated and results of accelerated testing are used to provide predictive equations for long-term performance of the material, which are then used to analyze effectiveness at the level of seismic retrofit through four specific cases. The effect of deterioration is expressed, for ease in comparison, to an increase in the required thickness of the jacket with expected service-life. Results using unexposed values for materials performance are compared to those obtained using the values recommended by ACI-440 procedures, as well as through the use of time-dependent materials degradation models. It is shown that the ACI recommendations for durability may be excessively conservative for the 50-year period considered herein. The use of the proposed predictive methodology for materials durability combined with the analytical tools for design of FRP jacket thickness are shown to not only enable a better assessment of required jacket thickness but can also enable assessment of the dominant mechanism controlling selection of thickness which can change with time of exposure. Results of the accelerated tests are also linked to field exposure results providing a set of correlation factors.
机译:尽管FRP复合材料正越来越多地用于民用基础设施的修复,但仍然缺乏充分记录的长期耐久性数据以及明确考虑结构水平随时间推移而产生的影响的设计方法。本文提供了一项调查结果,旨在评估在材料层面上随时间推移而发生的劣化对用于地震翻新的FRP护套效果的影响。对三种不同的系统进行了研究,并使用加速测试的结果为材料的长期性能提供了预测方程,然后通过四种特定情况在地震改造水平上分析了有效性。为了便于比较,将劣化的影响表示为具有期望使用寿命的外套的所需厚度的增加。将使用未暴露材料性能值的结果与使用ACI-440程序推荐的值以及通过使用随时间变化的材料降解模型获得的结果进行比较。结果表明,对于此处考虑的50年期限,ACI耐久性建议可能过于保守。建议的材料耐用性预测方法与玻璃钢护套厚度设计的分析工具的结合使用,不仅可以更好地评估所需的护套厚度,而且还可以评估控制厚度变化的主导机制随着时间的推移。加速测试的结果也与提供一组相关因子的野外暴露结果相关联。

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