有机硅液体及其混合物的流动性和运动粘度研究

V. Iliv, Yarema Iliv
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引用次数: 0

摘要

初步研究表明,与GKZh-11N和GKZh-11K相比,疏水材料ZDP“硅聚合物”136-157 M、ETS-32、ETS-40及其许多类似物,在根据测定混凝土和瓷砖耐水性的标准方法开发的方法中,可以承受0.02 MPa的超水压。本文作者在gkzh - 11n和GKZh-11K的基础上研制了1k、2k、1n和2n的实验防水液。这些液体可用于有机硅化合物的疏水和硅化。防水液体对墙体材料的渗透深度,除了吸收性外,还取决于这种液体的运动粘度值。因此,建立防水液体的条件粘度和运动粘度是本文设定的任务之一。条件粘度(流动性)和运动粘度,由于它们之间的关系,使用粘度计VZ-1, VZ-4, VZ-246和一个球粘度计来测定。
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STUDY OF FLUIDITY AND KINEMATIC VISCOSITY OF ORGANIC SILICONAL LIQUIDS AND MIXTURES BASED ON THEM
Preliminary studies have shown that hydrophobic materials ZDP "Silicon Polymer" 136-157 M, ETS-32, ETS-40, and a number of their analogs, in contrast to GKZh-11N and GKZh-11K, can withstand excess water pressure of 0.02 MPa when tested for methods developed based on standard methods for determining the water-resistance of concrete and tiles. The authors of the article developed experimental waterproofing liquids 1 K, 2 K, 1 N, and 2 N, based on GKZh-11 N and GKZh-11K. These liquids are ready for use for hydrophobization and silicatization of organosilicon compounds. The depth of penetration of waterproofing liquids into wall materials depends, in addition to the absorbency, on the value of the kinematic viscosity of such liquids. Therefore, the establishment of conditional and kinematic viscosity of waterproofing liquids is one of the tasks set in this article. Conditional (fluidity) and kinematic viscosity, due to their relationship, were determined using viscometers VZ-1, VZ-4, VZ-246, and a ball viscometer.
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