无交联剂环氧涂料的固化行为和功能性能

IF 2.3 4区 材料科学 Q2 CHEMISTRY, APPLIED
Weih Q. Lee, Kevin Dawson
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引用次数: 0

摘要

为了确定无交联剂环氧体系作为应用涂料解决方案的可行性,本研究调查了阴离子催化无交联剂环氧功能涂料的设计固化行为和功能性能。研究采用了熔结环氧(FBE)粉末平台,并进行了以配方指数(FI)为导向的优化,将 FI 扩展到无穷大(或 ∞),从应用化学的角度来看,这完全相当于 100% 的环氧自交联。根据催化剂类型和负载量的不同,这些不含均相交联剂体系的固化动力学和流变学与含异相交联剂涂层的固化动力学和流变学差异很大。除了热固化反应(包括粘弹性凝胶化和玻璃化)外,结构特性,特别是玻璃化转变温度(Tg)、柔韧性、内聚韧性、抗渗性和附着力,也与配方的 Tg 能力或潜力以及底层环氧树脂或单体的化学结构、分子量(MW)、环氧当量重(EEW)和官能度(f)密切相关。报告和解释了其他一些有趣的发现,例如通过差示扫描量热仪(DSC)放热曲线分析得出的环氧-交联剂共聚和环氧-环氧均聚的同时性和顺序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Curing behaviors and functional performance of crosslinker-free epoxy coatings

Curing behaviors and functional performance of crosslinker-free epoxy coatings

To determine the feasibility of crosslinker-free epoxy systems as an applied coating solution, this study investigated the cure-by-design behaviors and functional performance of anionically catalyzed crosslinker-free epoxy functional coatings. A fusion boned epoxy (FBE) powder platform was utilized, and formulation index (FI)-oriented optimizations were performed, with the FI extended to infinity (or ∞), which corresponds exclusively to 100% epoxy self-crosslinking from an applied chemistry standpoint. Depending on the catalyst type and loading, the cure kinetics and rheology of these homogeneous crosslinker-free systems varied significantly from those of heterogeneous crosslinker-containing coatings. In addition to thermal curing responses (including viscoelastic gelation and vitrification), the structural properties, particularly glass transition temperature (Tg), flexibility, cohesive toughness, impermeability, and adhesion, are closely correlated to the Tg-capability or -potential of their formulations, as well as the chemical structures, molecular weights (MWs), epoxy equivalent weights (EEWs), and functionality (f) of the underlying epoxy resins or monomers. Other interesting findings, such as the concurrence and sequences of epoxy-crosslinker copolymerization and epoxy-epoxy homo-polymerization by differential scanning calorimetry (DSC) exothermic profile analysis, are reported and explained.

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来源期刊
Journal of Coatings Technology and Research
Journal of Coatings Technology and Research 工程技术-材料科学:膜
CiteScore
4.30
自引率
8.70%
发文量
130
审稿时长
2.5 months
期刊介绍: Journal of Coatings Technology and Research (JCTR) is a forum for the exchange of research, experience, knowledge and ideas among those with a professional interest in the science, technology and manufacture of functional, protective and decorative coatings including paints, inks and related coatings and their raw materials, and similar topics.
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