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承受热负荷的石膏基材料的反应性:反应机理研究

Reactivity of Gypsum-Based Materials Subjected to Thermal Load: Investigation of Reaction Mechanisms.

作者信息

Krause Felix, Renner Bernhard, Coppens Frederik, Dewanckele Jan, Schwotzer Matthias

机构信息

Karlsruhe Institute of Technology (KIT), Institute of Functional Interfaces (IFG), 76344 Eggenstein-Leopoldshafen, Germany.

Saint-Gobain Formula GmbH, 37445 Walkenried, Germany.

出版信息

Materials (Basel). 2020 Mar 20;13(6):1427. doi: 10.3390/ma13061427.

Abstract

The thermal stability of gypsum-based materials, and in this context, especially their long-term behavior, is the background of our current research activities. A comprehensive investigation program was compiled in which detailed examinations of various model materials exposed to thermal loads were carried out. The understanding of the partly not entirely consistent state of knowledge shall be sharpened especially by in situ observations of the thermally induced conversion reaction of gypsum into hemihydrate. The temporal course of the reaction was investigated non-destructively by in situ investigations in a high-resolution X-ray computed tomography setup, and the experiment was accompanied by detailed characterizations of the microstructure and composition. In this contribution, selected results of experiments with a high-purity natural gypsum rock as the model substance are presented. Studying the influence of temperature on the reaction showed that, even under supposedly dry conditions, the reaction could take place at much lower temperatures than usually reported in the literature. It was demonstrated that the transformation of gypsum into hemihydrate could take place at a temperature of already 50 °C. The results indicated that even under "classical" heating conditions in a conventional oven, the dissolution and crystallization processes in water films on the mineral surfaces could be suggested to be a driving force for the reaction. A corresponding reaction model, which took these aspects into account, was proposed in this work.

摘要

石膏基材料的热稳定性,尤其是在这种情况下它们的长期性能,是我们当前研究活动的背景。编制了一个综合调查计划,其中对各种承受热负荷的模型材料进行了详细检查。特别是通过对石膏热致转化为半水石膏的反应进行原位观察,将加深对部分并非完全一致的知识状态的理解。通过在高分辨率X射线计算机断层扫描装置中进行原位研究,对反应的时间进程进行了无损研究,并且该实验还伴随着对微观结构和成分的详细表征。在本论文中,展示了以高纯度天然石膏岩为模型物质的实验的选定结果。研究温度对反应的影响表明,即使在假定干燥的条件下,反应也能在比文献中通常报道的温度低得多的温度下发生。结果表明,石膏转化为半水石膏的过程在50°C时就可以发生。结果表明,即使在传统烤箱中的“经典”加热条件下,矿物表面水膜中的溶解和结晶过程也可能是反应的驱动力。本研究提出了一个考虑这些因素的相应反应模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/118e/7142976/611263ea1798/materials-13-01427-g001.jpg

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