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硅酸钠/尿素/三聚氰胺三元协同水性丙烯酸阻燃涂料及其阻燃机理

Sodium Silicate/Urea/Melamine Ternary Synergistic Waterborne Acrylic Acid Flame-Retardant Coating and Its Flame-Retardant Mechanism.

作者信息

Shao Yuran, Wang Yuting, Yang Fei, Du Chungui, Zhu Jiawei, Ran Ying, Bao Qichao, Shan Yingying, Zhang Weigang

机构信息

Bamboo Industry Institute, Zhejiang A & F University, Hangzhou 311300, China.

College of Chemistry and Materials Engineering, Zhejiang A & F University, Hangzhou 311300, China.

出版信息

Molecules. 2024 Mar 26;29(7):1472. doi: 10.3390/molecules29071472.

Abstract

Waterborne acrylic coatings, the largest market share of predominant environmentally friendly coatings, face limitations in their extensive application due to their flammability. The flame-retardant properties of the coatings could be significantly enhanced by incorporate inorganic flame retardants. However, inorganic flame retardants tend to aggregate and unevenly disperse in waterborne acrylic coatings, causing a substantial decrease in flame retardancy. In this work, sodium silicate was utilized as a flame retardant, with urea and melamine serving as modifiers and synergistic agents. This combination resulted in the preparation of a sodium silicate/urea/melamine ternary synergistic waterborne acrylic flame-retardant coating. This coating was applied to the surface of poplar veneer to create flame-retardant poplar veneer. Subsequently, various instruments, including a scanning electron microscope (SEM), a limiting oxygen index meter (LOI), a thermogravimetric analyzer (TG), and a cone calorimeter (CONE), were employed to investigate the relevant properties and mechanisms of both the flame-retardant coating and poplar veneer. The results demonstrated that the sodium silicate/urea/melamine ternary synergistic flame retardant did not exhibit aggregation and could be uniformly dispersed in waterborne acrylic coatings. The physical and mechanical properties of the ternary synergistic flame-retardant poplar veneer coating were satisfactory. Melamine and urea, acting as modifiers, not only greatly enhanced the dispersibility of sodium silicate in waterborne acrylic coatings, but also assisted in the formation of a silicon-containing char layer through the generation of nitrogen, achieving ternary synergistic flame retardancy. In conclusion, this work explores a novel method to efficiently and uniformly disperse inorganic flame retardants in organic coatings. It significantly improves the dispersibility and uniformity of inorganic flame retardants in organic polymers, thereby substantially enhancing the flame-retardant performance of coatings. This work provides a theoretical basis for the research and application of new flame-retardant coatings in the field of chemistry and materials.

摘要

水性丙烯酸涂料是主要的环保型涂料中市场份额最大的一类,但由于其易燃性,在广泛应用方面面临限制。通过加入无机阻燃剂可以显著提高涂料的阻燃性能。然而,无机阻燃剂在水性丙烯酸涂料中容易聚集和分散不均,导致阻燃性大幅下降。在这项工作中,硅酸钠被用作阻燃剂,尿素和三聚氰胺用作改性剂和协同剂。这种组合制备出了硅酸钠/尿素/三聚氰胺三元协同水性丙烯酸阻燃涂料。将该涂料涂覆在杨木单板表面,制成阻燃杨木单板。随后,使用包括扫描电子显微镜(SEM)、极限氧指数仪(LOI)、热重分析仪(TG)和锥形量热仪(CONE)在内的各种仪器,研究了阻燃涂料和杨木单板的相关性能及机理。结果表明,硅酸钠/尿素/三聚氰胺三元协同阻燃剂不会出现聚集现象,能够均匀地分散在水性丙烯酸涂料中。三元协同阻燃杨木单板涂料的物理和力学性能令人满意。三聚氰胺和尿素作为改性剂,不仅大大提高了硅酸钠在水性丙烯酸涂料中的分散性,还通过产生氮协助形成含硅炭层,实现了三元协同阻燃。总之,这项工作探索了一种在有机涂料中高效均匀分散无机阻燃剂的新方法。它显著提高了无机阻燃剂在有机聚合物中的分散性和均匀性,从而大幅提高了涂料的阻燃性能。这项工作为化学和材料领域新型阻燃涂料的研究与应用提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47aa/11013455/6c224d547a46/molecules-29-01472-g002.jpg

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