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Comparison of Ultrasonic Methods for Thermally Damaged Concrete Nondestructive Testing

机译:超声波方法对热损坏混凝土无损检测的比较

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Behaviour of concrete under elevated temperatures is very complex. There is a change of mechanical and physical parameters with temperature. In this paper we study the relations of thermal damage processes in concrete and parameters obtained by different ultrasonic methods. The concrete specimens were heated in programmable laboratory furnace. Selected temperature (200°C, 400°C, 600°C, 800°C, 1000°C and 1200°C) were maintained for 60 minutes. The first ultrasonic measurement technique in this paper was Ultrasonic Pulse Velocity method. The pulse velocity in a concrete depends on its density and its elastic properties. Therefore, it is possible to deduce the quality and the compressive strength of the concrete from the ultrasonic pulse velocity. The second ultrasonic measurement technique in this paper uses broadband pulse-compression signal, with variable amplitude to measure the change of fundamental frequency. This method is based on Nonlinear Elastic Wave Spectroscopy. Nonlinear Elastic Wave Spectroscopy methods takes advantage of the fact, that nonlinearities in material manifest themselves as a resonant frequency shifts and harmonics or dumping coefficients changes. The progress of nondestructive testing parameters was confirmed by results from the destructive tests.
机译:在高温下混凝土的行为非常复杂。具有温度的机械和物理参数的变化。本文研究了不同超声波方法获得的混凝土和参数中的热损伤过程的关系。混凝土试样在可编程实验室炉中加热。将选定的温度(200℃,400℃,600℃,800℃,1000℃和1200℃)保持60分钟。本文的第一种超声测量技术是超声波脉冲速度法。混凝土中的脉冲速度取决于其密度及其弹性性能。因此,可以从超声波脉冲速度推导混凝土的质量和压缩强度。本文中的第二个超声测量技术采用宽带脉冲压缩信号,具有可变幅度来测量基频的变化。该方法基于非线性弹性波谱。非线性弹性波谱法利用该事实,材料中的非线性本身作为谐振频率移位和谐波或倾倒系数的变化。通过破坏性测试的结果证实了非破坏性测试参数的进展。

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