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使用多通道冲击回波测试评估轨道混凝土层与液压稳定基层之间界面脱粘的混凝土板轨道。

Evaluation of a Concrete Slab Track with Debonding at the Interface between Track Concrete Layer and Hydraulically Stabilized Base Course Using Multi-Channel Impact-Echo Testing.

作者信息

Lee Jin-Wook, Lee Sung-Jin, Kee Seong-Hoon

机构信息

Advanced Railroad Civil Engineering Division, Korea Railroad Research Institute, 176 Cheoldobangmulgwan-ro, Uiwang-si 16105, Gyeonggi-do, Korea.

Department of ICT Integrated Ocean Smart Cities Engineering, Dong-A University, 37 Nakdong-daero 550, Beon-gil, Saha-gu, Busan-si 69315, Korea.

出版信息

Sensors (Basel). 2021 Oct 26;21(21):7091. doi: 10.3390/s21217091.

DOI:10.3390/s21217091
PMID:34770398
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8587701/
Abstract

Multi-channel Impact-echo (IE) testing was used to evaluate debonding defects at the interface between track concrete layer, TCL, and hydraulically stabilized base course, HSB, in a real scale mockup model of concrete slab tracks for Korea high-speed railway (KHSR) system. The mockup model includes three debonding defects that were fabricated by inserting three 400 mm by 400 mm (length and width) thin plastic foam boards with three different thicknesses of 5 mm, 10 mm, and 15 mm, before casting concrete in TCL. Multi-channel IE signals obtained over solid concrete and debonding defects were reduced to three critical IE testing parameters (the velocity of concrete, peak frequency, and factor). Bilinear classification models were used to evaluate the individual and a combination of the characteristic parameters. It was demonstrated that the best evaluation performance was obtained by using average peak frequency or the combination of average peak frequency and average factor, obtained by eight accelerometers in the multi-channel IE device. The results and discussion in this study would improve the understanding of characteristics of multiple IE testing parameters in concrete slab tracks and provide a fundamental basis to develop an effective prediction model of non-destructive evaluation for debonding defects at the interface between TCL and HSB in concrete slab tracks.

摘要

在韩国高速铁路(KHSR)系统混凝土板式轨道的实体比例模型中,采用多通道冲击回波(IE)测试来评估轨道混凝土层(TCL)与液压稳定基层(HSB)之间界面处的脱粘缺陷。该模型包括三个脱粘缺陷,是在TCL浇筑混凝土之前,通过插入三块尺寸为400毫米×400毫米(长和宽)、厚度分别为5毫米、10毫米和15毫米的不同厚度的薄塑料泡沫板制成的。在实心混凝土和脱粘缺陷上获取的多通道IE信号被简化为三个关键的IE测试参数(混凝土速度、峰值频率和 因子)。采用双线性分类模型来评估各个特征参数及其组合。结果表明,使用多通道IE设备中八个加速度计获得的平均峰值频率或平均峰值频率与平均 因子的组合,可获得最佳评估性能。本研究的结果和讨论将增进对混凝土板式轨道中多个IE测试参数特征的理解,并为开发一种有效的无损评估预测模型提供基础,以评估混凝土板式轨道中TCL与HSB之间界面处的脱粘缺陷。

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本文引用的文献

1
Evaluation of Delamination in Concrete by IE Testing Using Multi-Channel Elastic Wave Data.利用多通道弹性波数据的 IE 测试评估混凝土分层。
Sensors (Basel). 2019 Dec 30;20(1):201. doi: 10.3390/s20010201.
2
Multiple reflections of Lamb waves at a delamination.分层处兰姆波的多次反射。
Ultrasonics. 2002 May;40(1-8):193-7. doi: 10.1016/s0041-624x(02)00136-1.