涂料工业 ›› 2023, Vol. 53 ›› Issue (10): 76-81. doi: 10.12020/j.issn.0253-4312.2023-101

• 健康·安全·环境 • 上一篇    下一篇

基材润湿剂在水性涂料中的应用研究

刘木林   

  1. 西谱森新材料有限公司,上海 201615
  • 出版日期:2023-10-01 发布日期:2023-09-28
  • 作者简介:刘木林(1978—),男,硕士,主要从事水性涂料用无机硅材料及添加剂研发管理。

Research on the Application of Substrate Wetting Agent in Water-borne Coatings 

LIU M L   

  1. Sinobase New Material Co., Ltd., Shanghai 201615,China
  • Online:2023-10-01 Published:2023-09-28

摘要: 为综合评估不同结构类型的基材润湿剂在水性涂料中的应用,探讨了硅类及非硅类不同化学结构的基材润湿剂在水溶液中的表面张力、水解稳定性、抑泡性以及应用在水性涂料中的表面张力、初始基材表面润湿效果、热贮存后的基材润湿效果以及抑泡性能。结果表明:不同结构类型的基材润湿剂对水性涂料表面张力(γlg)的影响均小于其对水溶液表面张力(γlg)的影响;基材润湿效果受到水性涂料的表面张力(γlg)和水性涂料与基材间的表面张力(γsl)的影响,基材润湿效果的稳定性由基材润湿剂化学结构决定,不同结构的硅类基材润湿剂均存在不同程度的水解稳定性问题,抗水解稳定的星型聚醚基材润湿剂则相对保持较高的基材润湿效果及稳定性。不同结构基材润湿剂水溶液抑泡性呈现比较大的差别,但在水性涂料中区别并不明显。

关键词: 基材润湿剂, 水性涂料, 低表面能基材, 水解稳定性, 抑泡性

Abstract: The application of different structure types of substrate wetting agents inwaterborne coatings was evaluated comprehensively in this paper. The surface tension(γlg), hydrolytic stability,and bubble inhibition of silicone and non-silicon substrate wetting agentswith different chemical structures in aqueous solution,as well as the surface tension(γlg) applied to water-borne coatings,the initial surface wetting effect of the substrate,the wettingeffect of the substrate after heat storage,and the influence on the bubble inhibition of the water-borne coating system were discussed. The results showed that the influence of substrate wettingagents with different structure on the surface tension(γlg)of water-borne coatings would bereduced compared with that of aqueous solution. The wetting effect of the substrate would beaffected by surface tension(γlg)and surface tension(γsl)of water-borne coatings. The stabilityof the wetting effect of the substrate would be affected by the chemical structure of the substrate wetting agent. The wetting agents with different structure of silicon substrate indicated differentdegree of hydrolytic stability problems,while the star polyether substrate wetting agents withanti-hydrolytic stability maintain higher wetting effect and stability. The bubble inhibition ofsubstrate wetting agent aqueous solution with different structure would show great difference, but the difference was not obvious in water-borne coatings.

Key words: substrate wetting agent, water-borne coatings, low surface energy substrate, hydrolytic stability, bubble inhibition

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