表面活性剂存在下醇酸漆和清漆材料中二氧化钛润湿性能的优化

Kirill Ostrovnoy, A. Dyuryagina, A. Demyanenko, V. Tyukanko
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引用次数: 6

摘要

本文报道了以五苯(PPh)和醇酸氨基甲酸酯(AU)成膜物质为基础,研究表面活性剂(SAS)对醇酸漆和清漆材料(PVM)中二氧化钛润湿性的影响。以边缘润湿角(θ°)和附着功(Wa)作为评价二氧化钛润湿性的标准。采用三种助剂作为SAS:原产品as -1,从炼油废料中获得(低成本),工业助剂:“Telaz”和聚乙烯多胺(PEPA)。在PPh和AU PVM中所研究的添加剂均能改善二氧化钛的润湿性。在组成物中AS成膜物质含量为30%时,AS-1的θ°最大下降幅度为4.5°,PEPA和Telaz的θ°最大下降幅度为4°。在相同条件下,对于五苯组成物,AS-1的边缘润湿角减小10°,Telaz的边缘润湿角减小8.6°,PEPA的边缘润湿角减小5.9°。根据两种体系的相对润湿角变化,θ°的最大降幅约为10%。在AU的组成中引入SAS会模糊地影响粘附功,对于PPh,引入SAS会导致粘附功的降低(Wa)。AS-1是最大限度减少粘附功的SAS。采用概率确定性规划的方法,分析了PVM的组成,以保证二氧化钛与成膜溶液的最大润湿。推导出了随溶剂含量和PVM中SAS含量变化的二氧化钛润湿边缘角的计算公式。验证了as -1产品作为醇酸漆和清漆润湿添加剂的有效性。原SAS - AS-1的润湿能力接近工业添加剂PEPA和Telaz。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of Titanium Dioxide Wetting in Alkyd Paint and Varnish Materials in the Presence of Surfactants
This paper reports the results of studying the influence of surfactants (SAS) on the wetting of titanium dioxide in alkyd paint and varnish materials (PVM), based on pentaphthalic (PPh) and alkyd-urethane (AU) film-forming substances. Edge wetting angle (θ°) and adhesion work (Wa) were used as the criteria for assessing the wettability of titanium dioxide. Three additives were used as SAS: the original product AS-1, obtained from waste of oil refining (with low cost), and industrial additives: "Telaz" and polyethylene polyamine (PEPA). All the studied additives in PPh and AU PVM improve the wetting of titanium dioxide. At the 30 % content of AS film-forming substance in the composition, the maximum decrease in θ° for AS-1 is 4.5°, for PEPA and Telaz it is 4°. For pentaphthalic composition under similar conditions, a decrease in edge wetting angle for AS-1 is 10 °, for Telaz 8.6°, and for PEPA 5.9°. According to the relative change in edge wetting angle for both systems, the maximum decrease in θ° is about 10 %. The introduction of SAS into the composition of AU ambiguously affects the adhesion work, for PPh, the introduction of SAS causes a decrease in adhesion work (Wa). AS-1 is the SAS that minimally reduces adhesion work. The compositions of the PVM by the method of probabilistic-deterministic planning, which ensures maximum wetting of titanium dioxide with film-forming solutions, were analyzed. The equations for calculating the edge angle of wetting of titanium dioxide depending on the content of solvent and the SAS in the PVM were derived. The effectiveness of the AS-1 product as a wetting additive for alkyd paints and varnishes was proven. The wetting ability of the original SAS – AS-1 is close to industrial additives PEPA and Telaz.
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