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基于温度与水分子协同效应的环氧涂层扩散机制及失效行为研究

Study on diffusion mechanism and failure behavior of epoxy coatings focusing on synergistic effect of temperature and water molecules.

作者信息

Yang Chao, Han Qing, Wang Anquan, Han Wei, Sun Liang, Yang Laishun

机构信息

Postdoctoral Scientific Research Workstation of Shengli Oilfield Company, SINOPEC, Dongying, China.

Technology Inspection Center of Shengli Oilfield, SINOPEC, Dongying, China.

出版信息

Des Monomers Polym. 2021 Mar 29;24(1):73-88. doi: 10.1080/15685551.2021.1904581.

Abstract

The research on the diffusion of water in coatings has been a hot topic in many fields, such as chemistry, coating structure and hydrogen bonding. In this paper, DGEBA epoxy coating was used as a sample to explore the diffusion process of 3 wt.% NaCl solution at different temperatures. Two-stage diffusion was established by immersion experiment and MD simulation. The synergistic effect of temperature and water on DGEBA properties was revealed by FTIR method and adsorption-desorption cyclic testing. The results showed that as the temperature increased, the saturation water content in coatings increased. At different temperatures, the diffusion process of water presented two-phase characteristics, and the influence of temperature on the diffusion process was mainly manifested in the cross-linking density at higher locations. Based on the variation law of swelling coefficient in per unit time (24 h), the conditions for water-coating interaction and formation of water clusters in this paper were proposed. The synergistic effect of water and temperature on DGEBA properties was reflected in two aspects: at lower temperature (20 °C), water would only change the physical structure of the coatings, while the water broke the DGEBA chains at higher temperature (60 °C).

摘要

水在涂层中的扩散研究一直是化学、涂层结构和氢键等众多领域的热门话题。本文以双酚A缩水甘油醚环氧树脂(DGEBA)涂层为样品,探究了不同温度下3 wt.%氯化钠溶液的扩散过程。通过浸泡实验和分子动力学(MD)模拟建立了两阶段扩散模型。利用傅里叶变换红外光谱(FTIR)法和吸附-脱附循环测试揭示了温度和水对DGEBA性能的协同作用。结果表明,随着温度升高,涂层中的饱和含水量增加。在不同温度下,水的扩散过程呈现两相特征,温度对扩散过程的影响主要体现在较高位置的交联密度上。基于单位时间(24小时)内溶胀系数的变化规律,本文提出了水与涂层相互作用及形成水簇的条件。水和温度对DGEBA性能的协同作用体现在两个方面:在较低温度(20℃)下,水只会改变涂层的物理结构,而在较高温度(60℃)下,水会破坏DGEBA链。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66be/8009131/b7ede1519d4e/TDMP_A_1904581_F0001_B.jpg

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