Yang Xukun, Wan Yange, Yang Nan, Hou Yilin, Chen Dantong, Liu Jiachen, Cai Guoshuai, Wang Mingchao
School of Materials and Engineering, Key Lab of Advanced Ceramics and Machining Technology of Ministry of Education, Tianjin University, 92 Weijin Road, Tianjin 300072, China.
Beijing Institute of Astronautical Systems Engineering, Beijing 100076, China.
Materials (Basel). 2024 Jan 10;17(2):348. doi: 10.3390/ma17020348.
The epoxy resin-based (ESB) intumescent flame-retardant coatings were modified with 1,4-butanediol diglycidyl ether (14BDDE) and butyl glycidyl ether (BGE) as diluents and T403 and 4,4'-diaminodiphenylmethane (DDM) as curing agents, respectively. The effects of different diluents and curing agents on the flame-retardant and mechanical properties, as well as the composition evolution of the coatings, were investigated by using large-plate combustion, the limiting oxygen index (LOI), vertical combustion, a cone calorimeter, X-ray diffraction, FTIR analysis, a N adsorption and desorption test, a scanning electron microscope (SEM), a tensile strength test, and a viscosity test. The results showed that the addition of 14BBDE and T403 promoted the oxidation of BC and the formation of boron-containing glass or ceramics, increased the residual mass of char, densified the surface char layer, and increased the specific surface area of porous residual char. When their dosage was 30%, ESB-1T-3 coating exhibited the most excellent flame-retardant properties. During the 2 h large-plate combustion test, the backside temperature was only 138.72 °C, without any melting pits. In addition, the peak heat release rate (PHRR), total heat release rate (THR), total smoke production (TSP), and peak smoke production (PSPR) were reduced by 13.15%, 13.9%, 5.48%, and 17.45%, respectively, compared to the blank ESB coating. The LOI value reached 33.4%, and the vertical combustion grade was V-0. In addition, the tensile strength of the ESB-1T-3 sample was increased by 10.94% compared to ESB. In contrast, the addition of BGE and DDM promoted the combustion of the coating, affected the ceramic process of the coating, seriously affected the formation of borosilicate glass, and exhibited poor flame retardancy. The backside temperature reached 190.93 °C after 2 h combustion. A unified rule is that as the amount of diluent and curing agent increases, the flame retardancy improves while the mechanical properties decrease. This work provides data support for the preparation and process optimization of resin-based coatings.
以1,4 - 丁二醇二缩水甘油醚(14BDDE)和丁基缩水甘油醚(BGE)作为稀释剂,T403和4,4'-二氨基二苯甲烷(DDM)作为固化剂,对环氧树脂基(ESB)膨胀型防火涂料进行了改性。通过大板燃烧、极限氧指数(LOI)、垂直燃烧、锥形量热仪、X射线衍射、傅里叶变换红外光谱(FTIR)分析、氮气吸附脱附试验、扫描电子显微镜(SEM)、拉伸强度试验和粘度试验,研究了不同稀释剂和固化剂对涂料阻燃性能、力学性能以及涂料成分演变的影响。结果表明,添加14BBDE和T403促进了BC的氧化以及含硼玻璃或陶瓷的形成,增加了残炭质量,使表面炭层致密化,并增加了多孔残炭的比表面积。当它们的用量为30%时,ESB - 1T - 3涂层表现出最优异的阻燃性能。在2小时的大板燃烧试验中,背面温度仅为138.72℃,无任何熔坑。此外,与空白ESB涂层相比,热释放速率峰值(PHRR)、总热释放量(THR)、总产烟量(TSP)和产烟速率峰值(PSPR)分别降低了13.15%、13.9%、5.48%和17.45%。LOI值达到33.4%,垂直燃烧等级为V - 0。此外,ESB - 1T - 3样品的拉伸强度比ESB提高了10.94%。相比之下,添加BGE和DDM促进了涂料的燃烧,影响了涂料的陶瓷化过程,严重影响了硼硅酸盐玻璃的形成,阻燃性能较差。燃烧2小时后背面温度达到190.93℃。一个统一的规律是,随着稀释剂和固化剂用量的增加,阻燃性提高而力学性能下降。这项工作为树脂基涂料的制备和工艺优化提供了数据支持。