An Ki-Won, Oh Kyu-Hwan, Jiang Bo, He Xingyang, Oh Sang-Keun
Department of Architecture, Graduate school, Seoul National University of Science & Technology, 232 Gongneung-ro, Nowon-gu, Seoul 01811, Korea.
Department of Railway Construction Engineering, Graduate School of Railway, Seoul National University of Science & Technology, 232 Gongneung-ro, Nowon-gu, Seoul 01811, Korea.
Materials (Basel). 2020 Feb 6;13(3):742. doi: 10.3390/ma13030742.
An evaluation method for assessing the difference in the relative humidity (RH) control performance of waterproofing material is proposed. For a demonstration of this evaluation method, two waterproofing materials (urethane coating and cementitious waterproofing material) installed with different methods (positive and negative side of concrete structure respectively) are exposed to temperature conditions representing three seasonal conditions: Summer (40 °C), spring/autumn (20 °C) and winter (4 °C). Condensation level changes on the inner side of the waterproofing material installed specimen is measured, and for derive criteria for comparison, three parameters based on the average RH, intercept RH (derived from a linear regression analysis of RH measurement), and maximum relative humidity are derived for each different waterproofing material installed specimen. Based on quality specification for underground concrete structures, the demonstration evaluation establishes provisional standard criteria of below 70% RH, and all three parameters are evaluated to determine whether the tested waterproofing material/method complies to the performance requirement. Additional analysis through linear regression and cumulative probability density graphs are derived to evaluate the RH consistency and range parameters. The evaluation regime demonstrates a quantitative RH analysis method and apparatus, and a newly designed evaluation criteria is used to compare the RH control performance of positive-side installed urethane waterproofing materials and negative-side installed cementitious waterproofing material.
提出了一种评估防水材料相对湿度(RH)控制性能差异的评估方法。为了演示这种评估方法,将两种采用不同方法(分别安装在混凝土结构的正面和背面)安装的防水材料(聚氨酯涂料和水泥基防水材料)置于代表三个季节条件的温度环境中:夏季(40°C)、春秋季(20°C)和冬季(4°C)。测量安装有防水材料的试件内侧的凝结水平变化,并为得出比较标准,针对每个安装不同防水材料的试件,基于平均相对湿度、截距相对湿度(通过相对湿度测量的线性回归分析得出)和最大相对湿度得出三个参数。根据地下混凝土结构的质量规范,示范评估建立了相对湿度低于70%的暂行标准,对所有三个参数进行评估,以确定测试的防水材料/方法是否符合性能要求。通过线性回归和累积概率密度图进行额外分析,以评估相对湿度的一致性和范围参数。该评估体系展示了一种定量相对湿度分析方法和装置,并使用新设计的评估标准来比较正面安装的聚氨酯防水材料和背面安装的水泥基防水材料的相对湿度控制性能。