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从湿润到防护:水性涂料中的成膜过程

From Wet to Protective: Film Formation in Waterborne Coatings.

作者信息

Arjmandi Abolfazl, Bi Huichao, Nielsen Stefan Urth, Dam-Johansen Kim

机构信息

CoaST, Department of Chemical and Biochemical Engineering, Technical University of Denmark (DTU), Building 229, Kgs. Lyngby 2800, Denmark.

R&D Department, Hempel A/S, Lundtoftegaardsvej 91, Kgs. Lyngby 2800, Denmark.

出版信息

ACS Appl Mater Interfaces. 2024 Oct 30;16(43):58006-58028. doi: 10.1021/acsami.4c09729. Epub 2024 Oct 21.

Abstract

The importance of anticorrosive coatings cannot be overstated, as they play a vital role in safeguarding assets and infrastructure across various industries. Within this context, the emergence of waterborne (WB) coatings stands out for their paramount significance, offering a sustainable alternative to traditional solvent-based (SB) coatings and addressing pressing environmental concerns. Despite their eco-friendliness, the complexity of their film formation mechanism and the lack of understanding present challenges in enhancing the performance of waterborne coatings for corrosion protection. These coatings are created by dispersing polymers in water, which then form a protective film on a substrate. The process involves stages like water evaporation, particle packing, and polymer interdiffusion, often leading to films with defects and inferior protection against extremely corrosive environments compared to SB coatings. This Review scrutinizes the interplay of factors affecting film formation in application, including coalescing agents, environmental factors, and application conditions. A comparative analysis between SB and WB coatings is also featured to shed light on the performance gap under harsh conditions. This Review discusses analytical techniques for studying film formation, aiming to guide future research toward improving WB coatings' durability and effectiveness. In compiling this collective wisdom, this Review emphasizes the translation of theoretical understanding into practical knowledge, equipping formulators with actionable insights to optimize WB coatings for real-world application and performance.

摘要

防腐涂层的重要性无论怎样强调都不为过,因为它们在保护各个行业的资产和基础设施方面发挥着至关重要的作用。在此背景下,水性(WB)涂料的出现因其至关重要的意义而格外突出,它为传统溶剂型(SB)涂料提供了一种可持续的替代方案,并解决了紧迫的环境问题。尽管它们具有生态友好性,但其成膜机制的复杂性以及人们对其缺乏了解,在提高水性防腐涂料的性能方面带来了挑战。这些涂料是通过将聚合物分散在水中制成的,然后在基材上形成保护膜。这个过程涉及水蒸发、颗粒堆积和聚合物相互扩散等阶段,与SB涂料相比,通常会导致形成有缺陷的膜,并且对极端腐蚀性环境的防护效果较差。本综述仔细研究了在应用中影响成膜的各种因素之间的相互作用,包括聚结剂、环境因素和应用条件。还对SB涂料和WB涂料进行了对比分析,以阐明在苛刻条件下的性能差距。本综述讨论了研究成膜的分析技术,旨在引导未来的研究朝着提高WB涂料的耐久性和有效性的方向发展。在汇集这些集体智慧的过程中,本综述强调将理论理解转化为实践知识,为配方设计师提供可行的见解,以便优化WB涂料在实际应用中的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e37/11533165/d3029adfd406/am4c09729_0001.jpg

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