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Mercury intrusion porosimetry in concrete technology: tips in measurement, pore structure parameter acquisition and application

机译:混凝土技术中的压汞法:测量技巧,孔结构参数的获取和应用

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摘要

Mercury intrusion porosimetry (MIP) has been widely used to investigate the pore structure of cement based materials for many years. The purpose of this paper is to present views of how to make MIP results of similar materials from different research institutes compatible and how to use MIP results in modeling. Factors that influence MIP results are analyzed comprehensively considering characteristics of cement based materials, and recommendations corresponding to these factors are illustrated. According to these recommendations, when specific tests are unavailable, mercury surface tension of 480 mM/m and mercury-solid contact angle of 130° may be used in theoretical calculations of pore size; sampling by either sawing or core-drilling, maximum value of the minimum sample dimension of 5 mm, and solvent drying are recommended for sample preparation; and staged operation mode which set appropriate equilibrium time is recommended for MIP measurements of cement based materials. From a MIP result, the methods which are necessary to be unified to determine pore structure parameters are discussed. Besides, it is shown that sometimes pore structure parameters should be used carefully in physical models by considering their physical or statistical meanings.
机译:多年来,汞侵入孔隙率法(MIP)已广泛用于研究水泥基材料的孔结构。本文的目的是提出有关如何使来自不同研究机构的相似材料的MIP结果兼容以及如何在建模中使用MIP结果的观点。考虑水泥基材料的特性,综合分析了影响MIP结果的因素,并给出了与这些因素相对应的建议。根据这些建议,当无法进行特定测试时,可以在孔径的理论计算中使用480 mM / m的汞表面张力和130°的汞固接触角。建议通过锯切或岩心钻孔进行采样,最小样品尺寸为5 mm的最大值,并进行溶剂干燥以进行样品制备;对于水泥基材料的MIP测量,建议设置适当的平衡时间的分阶段操作模式。从MIP结果中,讨论了确定孔隙结构参数所需统一的方法。此外,表明在物理模型中有时应通过考虑其物理或统计含义来谨慎使用孔结构参数。

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