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Hygric properties of porous building materials (III): Impact factors and data processing methods of the capillary absorption test

机译:多孔建筑材料的Hygric性质(III):毛细吸收试验的影响因素和数据处理方法

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摘要

The capillary absorption test is one of the most frequently performed material characterization tests. It provides the capillary absorption coefficient and the capillary moisture content, both are important material properties. Currently, full consensus concerning the experimental protocol and data processing of the capillary absorption test has not been reached yet. This paper studies the potential impact factors during the test and compares different methods for processing the raw data. Measurements on calcium silicate, ceramic brick, sintered glass and autoclaved aerated concrete are carried out, and published literature results are reviewed. The impact of sample size, sealing method, initial moisture content, temperature and personnel have been thoroughly analyzed, and proper recommendations are provided accordingly. Moreover, a new data processing model with a solid physical background for calculating the capillary absorption coefficient and the capillary moisture content has been proposed. It shows obvious advantages over other published models and is applicable for both ideal and irregular capillary absorption patterns.
机译:毛细管吸收测试是最常执行的材料表征测试之一。它提供毛细吸收系数和毛细水分含量,这都是重要的材料性能。目前,尚未就毛细管吸收试验的实验方案和数据处理达成完全共识。本文研究了测试期间的潜在影响因素,并比较了处理原始数据的不同方法。对硅酸钙,陶瓷砖,烧结玻璃和高压灭菌加气混凝土进行了测量,并对发表的文献结果进行了综述。样品大小,密封方法,初始水分含量,温度和人员的影响已得到彻底分析,并据此提供了适当的建议。此外,提出了一种具有良好物理背景的新数据处理模型,用于计算毛细管吸收系数和毛细管含水量。它显示出优于其他已发布模型的明显优势,并且适用于理想和不规则毛细管吸收模式。

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