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Application of numerical procedure for thermal diagnostics of the delamination of strengthening material at concrete construction

机译:混凝土施工中加固材料分层热诊断数值诊断的应用

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Purpose- Large structural objects, primarily concrete bridges, can be reinforced by gluing to their stretched surface tapes of fiber-reinforced polymer (FRP). The condition for this technology to work requires the quality of the bonding of FRP and the concrete to be perfect. Possible defects may arise in the phase of construction but also as a result of long-term fatigue loads. These defects having different forms of voids and discontinuities in the bonding layer are difficult to detect by optical inspection. This paper aims to describe the development of a rapid and nondestructive method for quantitative assessment of the debonding between materials. Design/methodology/approach - The applied technique belongs to the wide class of active infrared (IR) thermography, the principle of which is to heat (or cool) the investigated object, and determine the properties of interest from the recorded, by an IR camera, temperature field. The methodology implemented in this work is to uniformly heat for a few seconds, using a set of halogen lamps, the FRP surface attached to the concrete. The parameter of interest is the thermal resistance of the layer separating the polymer tape and the concrete. The presence of voids and debonding will result in large values of this resistance. Its value is retrieved by solving an inverse transient heat conduction problem. This is accomplished by minimizing, in the sense of least squares, the difference between the recorded and simulated temperatures. The latter is defined as a solution of a ID transient heat conduction problem with the already mentioned thermal resistance treated as the only decision variable. Findings- A general method has been developed, which detects debonding of the FRP tapes from the concrete. The method is rapid and nondestructive. Owing to a special selection of the compared dimensionless measured and simulated temperatures, the method is not sensitive to the surface quality (roughness and emissivity). Measurements and calculation may be executed within seconds. The efficiency of the technique has been shown at a sample, where the defects have been artificially introduced in a controlled manner. Originality/value- A quantitative assessment procedure which can be used to determine the extent of the debonding has been developed. The procedure uses inverse technique whose result is the unknown thermal resistance between the member and the FRP strip.
机译:目的 - 通过粘合到它们的纤维增强聚合物(FRP)的拉伸表面带,可以加强主要结构物体,主要是混凝土桥。这种技术工作的条件需要FRP的粘合品和混凝土的质量。在施工的阶段中可能出现可能的缺陷,但也可能由于长期疲劳负载而产生。通过光学检查难以检测具有不同形式的空隙和粘合层中的不连续性的缺陷。本文旨在描述一种快速和非破坏性方法的发展,用于定量评估材料之间的剥离。设计/方法/方法 - 应用技术属于广泛的活性红外(IR)热成像,其原理是加热(或酷)所研究的对象,并通过IR确定感兴趣的感兴趣的属性相机,温度场。在这项工作中实施的方法是使用一组卤素灯均匀地加热几秒钟,FRP表面连接到混凝土。感兴趣的参数是分离聚合物带和混凝土的层的热阻。空隙和剥离的存在将导致这种阻力的大值。通过求解逆瞬态导热问题来检索其值。这是通过最小化最小二乘法,记录和模拟温度之间的差异来实现的。后者被定义为ID瞬态导热问题的解决方案,其具有作为唯一决策变量处理的被处理的热阻。调查结果 - 已经开发了一般方法,它检测了来自混凝土的FRP胶带的剥离。该方法快速而无损。由于特殊选择的比较维度测量和模拟温度,该方法对表面质量不敏感(粗糙度和发射率)。测量和计算可以在秒内执行。已经在样品处示出了该技术的效率,其中缺陷已经以受控方式引入。原创性/值 - 可以用于确定剥离程度的定量评估程序。该程序使用逆技术,其结果是构件和FRP条之间的未知热阻。

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