Mohammadi Dehcheshmeh Iman, Poursattar Marjani Ahmad, Sadegh Fatemeh, Soltani Mohammad Ebrahim, Safaeirad Mohammad, Frediani Marco
Department of Organic Chemistry, Faculty of Chemistry, Urmia University, Urmia, Iran.
Department of Chemistry "Ugo Schiff", University of Florence, Via della Lastruccia, 3-13, 50019, Sesto Fiorentino, Florence, Italy.
Sci Rep. 2024 Jun 11;14(1):13410. doi: 10.1038/s41598-024-62765-x.
Fireproof coatings are the simplest, most efficient, and oldest method for protecting a wide range of flammable products, such as wood. Furthermore, surface ignition is the initial phase, so surface protection is essential to reduce fire propagation. Furthermore, delaying the spread of flames can help to save someone when a fire starts. This project synthesized flame-resistant resin starting from tetraallyloxysilane monomer as a halogen-free monomer, an intrinsic flame retardant co-curing agent. The following step synthesized polyester resin using terephthalic acid as a heat-resistant resin. Unsaturated polyester was used by bulk radical polymerization. FT-IR and H-NMR analysis showed the successful synthesis of the desired monomer and polymeric compound. The thermal degradation and flame retardancy of pure unsaturated polyester resin (UPE) and allyloxysilane-unsaturated polyester (AUPE) were investigated by thermogravimetric analysis (TGA/DTG/DSC). The burning test and the thermal stability of the coating layers were evaluated using standard UL 94. Physical properties of resins were evaluated using Heat Deflection Temp tests (HDT) ISO 75-A, ASTM 648, Hardness ASTM D2583, Volumetric shrinkage ASTM 3521, and Water absorption ASTM D570. The results of the tests show the successful synthesis and their flame retardant properties.
防火涂料是保护多种易燃产品(如木材)的最简单、最有效且最古老的方法。此外,表面着火是初始阶段,因此表面保护对于减少火灾蔓延至关重要。而且,延缓火焰蔓延有助于在火灾发生时挽救生命。本项目以四烯丙氧基硅烷单体作为无卤单体、一种本征型阻燃共固化剂合成了阻燃树脂。接下来的步骤是以对苯二甲酸作为耐热树脂合成了聚酯树脂。通过本体自由基聚合使用了不饱和聚酯。傅里叶变换红外光谱(FT-IR)和氢核磁共振(H-NMR)分析表明成功合成了所需的单体和聚合物化合物。通过热重分析(TGA/DTG/DSC)研究了纯不饱和聚酯树脂(UPE)和烯丙氧基硅烷-不饱和聚酯(AUPE)的热降解和阻燃性。使用标准UL 94评估了涂层的燃烧试验和热稳定性。使用热变形温度试验(HDT)ISO 75-A、ASTM 648、硬度ASTM D2583、体积收缩率ASTM 3521和吸水性ASTM D570评估了树脂的物理性能。试验结果表明合成成功及其具有阻燃性能。