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Characterization of progressive microcracking in Portland cement mortar using nonlinear ultrasonics

机译:非线性超声表征波特兰水泥砂浆中的渐进微裂纹

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摘要

This paper presents the successful application of a nonlinear ultrasonic technique, nonlinear wave modulation spectroscopy (NWMS) to quantitatively track the evolution of microcracks in Portland cement mortar samples. The damage type considered in this study is microcracking due to alkali-silica reaction (ASR), a deleterious reaction occurring in concrete structures around the world. Nonlinear ultrasonic measurements are conducted on six different mortar specimens that are monitored from their initial, intact state up to their fully damaged state. The objective of this research is to determine the sensitivity and suitability of NWMS to quantitatively track this damage state throughout an entire life-cycle and to nondestructively identify the initiation time and the extent of microcracking in these mortar specimens. The nonlinear ultrasonic measurements are made with standard laboratory equipment, and the inherent high attenuation of cement-based materials is overcome with a procedure that uses the sideband energy instead of measuring peak amplitudes. The results show that the NWMS method can track the progressive damage in mortar, demonstrating the feasibility of using this nonlinear ultrasonic technique to quantitatively assess the deterioration of cement-based materials.
机译:本文介绍了非线性超声技术,非线性波调制光谱法(NWMS)的成功应用,以定量跟踪波特兰水泥砂浆样品中微裂纹的演变。这项研究中考虑的破坏类型是由于碱硅反应(ASR)引起的微裂纹,这是世界各地混凝土结构中发生的有害反应。在六个不同的灰浆样本上进行非线性超声测量,从初始的完整状态到完全损坏的状态进行监控。这项研究的目的是确定NWMS的敏感性和适用性,以便在整个生命周期中定量跟踪这种破坏状态,并无损地确定这些灰浆样本的起始时间和微裂纹的程度。非线性超声测量是使用标准实验室设备进行的,而水泥基材料固有的高衰减可以通过使用边带能量而不是测量峰值幅度的程序来克服。结果表明,NWMS方法可以跟踪砂浆中的渐进式损伤,证明了使用这种非线性超声技术定量评估水泥基材料的劣化的可行性。

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