Gorzelańczyk Tomasz, Schabowicz Krzysztof
Faculty of Civil Engineering, Wrocław University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.
Materials (Basel). 2019 Jul 7;12(13):2181. doi: 10.3390/ma12132181.
This paper presents the results of investigations into the effect of freeze-thaw cycling on the failure of fibre-cement boards and on the changes taking place in their structure. Fibre-cement board specimens were subjected to one and ten freeze-thaw cycles and then investigated under three-point bending by means of the acoustic emission method. An artificial neural network was employed to analyse the results yielded by the acoustic emission method. The investigations conclusively proved that freeze-thaw cycling had an effect on the failure of fibre-cement boards, as indicated mainly by the fall in the number of acoustic emission (AE) events recognized as accompanying the breaking of fibres during the three-point bending of the specimens. SEM examinations were carried out to gain better insight into the changes taking place in the structure of the tested boards. Interesting results with significance for building practice were obtained.
本文介绍了关于冻融循环对纤维水泥板破坏及结构变化影响的研究结果。对纤维水泥板试件进行了1次和10次冻融循环,然后采用声发射法在三点弯曲条件下进行研究。利用人工神经网络分析声发射法得到的结果。研究结果确凿地证明,冻融循环对纤维水泥板的破坏有影响,主要表现为在试件三点弯曲过程中,被识别为伴随纤维断裂的声发射(AE)事件数量下降。进行了扫描电子显微镜(SEM)检查,以便更好地了解被测板材结构的变化。获得了对建筑实践具有重要意义的有趣结果。