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STUDY ON THE DISPERSING EFFECT OF POLYCARBOXYLATE-BASED DISPERSANT

机译:聚羧酸盐基分散剂的分散效果研究

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摘要

Polycarboxylate -based air-entraininghigh-range water-reducing agents contain apolycarboxplate-based dispersing agent (PA) and adispersion retention agent. The PA adsorbs to thesurface of the binding material particles. Due tosteric effects, the particles are highly dispersed,resulting in a high level water reduction and highfluidity 1,2). It is considered that in the study of thedispersion effects of air-entraining high-range water-reducing agents, it is important to understand theadsorption properties of the PA. We focused on themolecular size and adsorbed number of PAmolecules. Based on the chemical structure andmolecular weight of the PA, we calculated itsmolecular size and determined that the maximumlength of the extended main chain is 20 nm and thatof the side chain was 7 nm. Considering the effectivevolume based on thermodynamics, one PA moleculeis adsorbed to every 400nm~2 of particle surface.However, according to calculations based on theactual measurement of specific surface area andadsorption 'mounts, one PA molecule is adsorbed toevery l00nm~2 of the particle surface. It is suggestedthat PA molecules shrunk and adsorbed on to thesurface of binding materials, more than imagination densely.
机译:基于聚羧酸盐的引气高范围减水剂包含基于聚羧酸盐的分散剂(PA)和分散保持剂。 PA吸附到结合材料颗粒的表面。由于空间效应,颗粒高度分散,导致高水平的减水和高流动性1,2)。人们认为,在研究引气高范围减水剂的分散效果时,重要的是要了解PA的吸附性能。我们关注于PA分子的分子大小和吸附数。基于PA的化学结构和分子量,我们计算了其分子大小,并确定了延伸的主链的最大长度为20 nm,侧链的最大长度为7 nm。考虑到基于热力学的有效体积,一个PA分子被吸附到每400nm〜2的颗粒表面上,但是,根据实际比表面积和吸附量的计算结果,一个PA分子被吸附到颗粒表面的每一个100nm〜2上。建议PA分子收缩并吸附到结合材料的表面上,比想象的要密集得多。

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