Experimental proof of moisture clog through neutron tomography in a porous medium under truly one‐directional drying

爆炸物 剥落 多孔介质 水分 材料科学 硬化(计算) 多孔性 微观结构 工作(物理) 表征(材料科学) 复合材料 法律工程学 机械工程 纳米技术 化学 工程类 图层(电子) 有机化学
作者
Murilo Henrique Moreira,Stefano Dal Pont,Alessandro Tengattini,A.P. Luz,V. C. Pandolfelli
出处
期刊:Journal of the American Ceramic Society [Wiley]
卷期号:105 (5): 3534-3543 被引量:14
标识
DOI:10.1111/jace.18297
摘要

Abstract Structural failure of concrete buildings on fire and complete destruction of the monolithic refractory lining during their drying stage are dangerous examples of the effect of explosive spalling on partially saturated porous media. Several observations in both cases indicated the presence of moisture accumulation ahead of the drying front, which are in tune with the most common theories on the explosive spalling of concrete. Previous studies have shown evidence of the existence of this phenomenon, however, they were biased by artifacts and experimental limitations (such as the beam hardening effect and changes in the microstructure of the material due to the presence of pressure and temperature sensors). In the current work, rapid neutron tomography was used to investigate the in‐operando drying behavior of a high‐alumina refractory castable, proposing a novel experimental layout aimed at a truly one‐dimensional drying front. This setup provided more realistic boundary conditions, such as the behavior of a larger wall heated from one of its sides, while also preventing some nonphysical artifacts (notably beam hardening). By eliminating these aspects, a direct proof that moisture accumulates ahead of the drying front was obtained. This work also lays the basis for further studies focusing on the response sensitivity analysis to boundary conditions and other parameters (e.g., heating rates and properties of the sample related to the moisture clog formation), as well as useful data for the validation and characterization stages of numerical models of partially saturated porous media.
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