Chai Hwa Kian, Liu Kit Fook, Behnia Arash, Yoshikazu Kobayashi, Shiotani Tomoki
Department of Civil Engineering, University of Malaya, Kuala Lumpur 50603, Malaysia.
Discipline of Civil Engineering, School of Engineering, Monash University Malaysia, Selangor 46150, Malaysia.
Materials (Basel). 2016 Apr 16;9(4):291. doi: 10.3390/ma9040291.
Concrete is the most ubiquitous construction material. Apart from the fresh and early age properties of concrete material, its condition during the structure life span affects the overall structural performance. Therefore, development of techniques such as non-destructive testing which enable the investigation of the material condition, are in great demand. Tomography technique has become an increasingly popular non-destructive evaluation technique for civil engineers to assess the condition of concrete structures. In the present study, this technique is investigated by developing reconstruction procedures utilizing different parameters of elastic waves, namely the travel time, wave amplitude, wave frequency, and Q-value. In the development of algorithms, a ray tracing feature was adopted to take into account the actual non-linear propagation of elastic waves in concrete containing defects. Numerical simulation accompanied by experimental verifications of wave motion were conducted to obtain wave propagation profiles in concrete containing honeycomb as a defect and in assessing the tendon duct filling of pre-stressed concrete (PC) elements. The detection of defects by the developed tomography reconstruction procedures was evaluated and discussed.
混凝土是最普遍使用的建筑材料。除了混凝土材料的新拌及早期性能外,其在结构使用寿命期间的状态会影响整体结构性能。因此,对能够研究材料状态的无损检测等技术的需求很大。层析成像技术已成为土木工程师评估混凝土结构状态越来越常用的无损评估技术。在本研究中,通过利用弹性波的不同参数(即传播时间、波幅、波频率和Q值)开发重建程序来研究该技术。在算法开发中,采用了射线追踪功能来考虑弹性波在含缺陷混凝土中的实际非线性传播。进行了数值模拟并辅以波动实验验证,以获取含蜂窝缺陷混凝土中的波传播剖面,并评估预应力混凝土(PC)构件的管道压浆情况。对所开发的层析成像重建程序检测缺陷的情况进行了评估和讨论。