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首页> 外文期刊>Journal of materials in civil engineering >Preliminary Thermography Studies for Quality Control of Concrete Structures Strengthened with Fiber-Reinforced Polymer Composites
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Preliminary Thermography Studies for Quality Control of Concrete Structures Strengthened with Fiber-Reinforced Polymer Composites

机译:纤维增强聚合物复合材料加固混凝土结构质量的初步热成像研究

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摘要

Fiber-reinforced polymer (FRP) composites, in the form of pultruded laminates or built-up woven fabrics, are being used widely to strengthen existing concrete and masonry structures. The success of these materials in performing their intended fundtions depends, to a large extent, on how well they are bonded to themselves and to the substrate. There is a need for an efficient and reliable method to detect and characterize defects at the substrate interface and within multi-ply systems. Infrared thermography is well suited for this purpose because it is inherently sensitive to the presence of near-surface defects and can interrogate large areas efficiently. Before infrared thermography can be developed into a standard methodology, however, an understanding is needed of the effects of testing parameters and different types of defects. A multiyear study is under way to develop this understanding through the use of controlled-flaw experiments and finite-element modeling. This paper reports on the initial phases of this study. An experimental setup is described for measuring the emissivity of a carbon FRP composite and for obtaining a well-defined heat pulse. Good agreement was found between experimental thermal response parameters and those calculated from finite-element models of controlled-flaw specimens. This agreement provides assurance of the validity of parametric studies based on numerical simulations.
机译:拉挤层压板或堆积机织织物形式的纤维增强聚合物(FRP)复合材料被广泛用于增强现有的混凝土和砖石结构。这些材料能否成功完成其预期的加工,在很大程度上取决于它们与自身以及与基材的粘合程度。需要一种有效且可靠的方法来检测和表征衬底界面处以及多层系统内的缺陷。红外热成像非常适合此目的,因为它对近表面缺陷的存在具有固有的敏感性,并且可以有效地询问大面积区域。但是,在将红外热成像技术发展为标准方法之前,需要了解测试参数和不同类型缺陷的影响。正在进行一项为期多年的研究,以通过使用受控缺陷实验和有限元建模来发展这种理解。本文报告了这项研究的初始阶段。描述了一种用于测量碳FRP复合材料的发射率并获得明确定义的热脉冲的实验装置。实验热响应参数与从受控缺陷样本的有限元模型计算得到的参数之间找到了很好的一致性。该协议为基于数值模拟的参数研究的有效性提供了保证。

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