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Evaluation of concrete degradation depending on heating conditions by ultrasonic pulse velocity

机译:根据加热条件通过超声波脉冲速度评估混凝土的降解

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摘要

As the mechanical properties of concrete subjected to high-temperature heating decrease due to continuous degradation, it is necessary to evaluate the integrity of concrete in real time. Hence, the degradation monitoring (continuous integrity evaluation) of concrete subjected to high-temperature heating was examined by employing ultrasonic pulse velocity. In this study, the mechanical properties and the ultrasonic pulse velocity in concrete subjected to high-temperature heating were evaluated for ordinary strength to ultra-high-strength concrete. To measure the ultrasonic pulse velocity in concrete during high-temperature heating, transducers were contacted to the top and bottom surfaces of the concrete specimens using SUS bars. This enabled monitoring of concrete degradation due to heating. In a range of 200-300 degrees C, it was confirmed that the thermal strain coincides with the static fracture strain at room temperature. The cracks generated during heating and the expansion of the cracks after cooling were clearly confirmed by continuous measurement of the ultrasonic pulse velocity. The cracks generated at temperatures up to 300 degrees C had little effect on the decrease in compressive strength. However, it was confirmed that the elastic modulus continuously decreased, because the cracks generated during heating and expanded after cooling led to strain increase at the peak stresses. Therefore, the evaluation method proposed in this study is anticipated to allow the integrity evaluation of concrete at high temperature heating. (C) 2018 Elsevier Ltd. All rights reserved.
机译:由于经受持续加热而使经受高温加热的混凝土的机械性能下降,因此需要实时评估混凝土的完整性。因此,通过使用超声波脉冲速度检查了经受高温加热的混凝土的劣化监测(连续完整性评估)。在这项研究中,评估了高温加热后混凝土的力学性能和超声脉冲速度,得出了超高强度混凝土的普通强度。为了测量高温加热过程中混凝土中的超声波脉冲速度,使用SUS棒将换能器与混凝土试样的顶部和底部表面接触。这样就可以监视由于加热引起的混凝土降解。在200〜300℃的范围内,确认了在室温下热应变与静态断裂应变一致。通过连续测量超声波脉冲速度,可以清楚地确认加热过程中产生的裂纹和冷却后的裂纹扩展。在高达300摄氏度的温度下产生的裂纹对压缩强度的降低影响很小。但是,可以确认弹性模量连续下降,这是因为在加热过程中产生的裂纹在冷却后膨胀并导致在峰值应力下应变增加。因此,本研究中提出的评估方法可望在高温加热下对混凝土进行完整性评估。 (C)2018 Elsevier Ltd.保留所有权利。

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