Schabowicz Krzysztof, Gorzelańczyk Tomasz, Zawiślak Łukasz, Chyliński Filip
Faculty of Civil Engineering, Wrocław University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.
Instytut Techniki Budowlanej, Filtrowa 1, 00-611 Warszawa, Poland.
Materials (Basel). 2023 Sep 10;16(18):6153. doi: 10.3390/ma16186153.
The diagnostics of materials, elements and structures after fire exposure are very complicated. Researchers carrying out such diagnostics encounter difficulties at the very beginning, e.g., how to map fire conditions. In this publication, the authors focused on the analysis of the fibre-cement composite used as facade cladding. The fibre-cement boards are construction products used in civil engineering. The fibre-cement boards are characterised by two phases: the matrix phase and the dispersed phase. The analysis of fibre-cement composite was performed using non-destructive methods. The use of non-destructive methods in the future will allow for the analysis of facades after fires without the need to obtain large elements, which will significantly reduce costs while increasing safety. The aim of the work was to determine internal changes in the microstructure of fibre-cement boards after exposure to fire. The degraded samples were compared with reference samples in the evaluation of the microstructure. An analysis was performed using a scanning electron microscope, images of backscattered electrons (BSE) and maps obtained using Energy Dispersive X-ray Spectroscopy (EDX), which allowed conclusions to be drawn. The observed changes were presented in the form of photos showing changes in the composition of the plates, and they were commented on. It should be noted that fire temperatures act destructively, and a number of changes can be observed in the microstructure. The results of the work indicate that, in the future, the use of non-destructive methods will make it possible to assess the degree of degradation of the façade after a fire.
火灾后材料、元素和结构的诊断非常复杂。进行此类诊断的研究人员从一开始就遇到困难,例如如何描绘火灾情况。在本出版物中,作者专注于对用作外墙覆层的纤维水泥复合材料进行分析。纤维水泥板是土木工程中使用的建筑产品。纤维水泥板具有两个相:基体相和分散相。使用无损方法对纤维水泥复合材料进行了分析。未来使用无损方法将能够在无需获取大型构件的情况下对火灾后的外墙进行分析,这将显著降低成本并提高安全性。这项工作的目的是确定纤维水泥板在火灾后的微观结构内部变化。在微观结构评估中,将降解后的样品与参考样品进行了比较。使用扫描电子显微镜、背散射电子(BSE)图像以及使用能量色散X射线光谱(EDX)获得的图谱进行了分析,从而得出结论。观察到的变化以显示板材成分变化的照片形式呈现,并进行了评论。应该注意的是,火灾温度具有破坏性,并且在微观结构中可以观察到许多变化。这项工作的结果表明,未来使用无损方法将能够评估火灾后外墙的降解程度。