Li Zheng, Cheng Xinyu, Liu Yanji, Liu Hao, Jiang Yan, Wang Na
Liaoning Provincial Key Laboratory for Synthesis and Preparation of Special Functional Materials, Shenyang University of Chemical Technology Shenyang 110142 Liaoning China
Shenyang Research Institute of Industrial Technology for Advanced Coating Materials Shenyang 110300 Liaoning China.
RSC Adv. 2022 Aug 5;12(34):21704-21712. doi: 10.1039/d2ra03377a. eCollection 2022 Aug 4.
A flame retardant synergist (g-CN@FeO) was designed through an co-precipitation method by using graphitized carbon nitride (g-CN) and FeO, and its structure was characterized by Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD) and X-ray photoelectron spectroscopy (XPS). A series of different contents of g-CN@FeO and intumescent flame retardant (IFR) were simultaneously added into eucommia ulmoides gum/natural rubber (EUG/NR) blends to improve the flame retardancy and reduce the smoke release. The flame retardancy, smoke suppression performance, thermal degradation behaviors and thermal stability of EUG/NR blends were evaluated by the limiting oxygen index (LOI), UL-94, cone calorimetry test (CCT) and thermogravimetric analysis (TGA). The results showed that using g-CN@FeO as a flame retardant synergist, the LOI value of the 9 phr g-CN@FeO synergist (EUG/NR 5) blend was 29.5%, which was much higher than the 20.0% of the original composite. Moreover, the 6 phr g-CN@FeO synergist (EUG/NR 4) and EUG/NR 5 passed the UL-94 V-0 rating, while the pristine EUG/NR blends showed no rating. Moreover, the total heat release rate (THR), peak of heat release rate (PHRR) and total smoke production (TSP) of the EUG/NR blends in the CCT test were much lower than those of the pristine EUG/NR blends. In particular, PHRR, THR and TSP of EUG/NR 5 decreased by 37.1%, 16.2% and 18.0%, respectively. This indicated that the introduction of g-CN@FeO decreased the release of combustible gases. TGA results also showed that the addition of g-CN@FeO accelerated the thermal degradation of the EUG/NR blends and changed the thermal degradation mechanism of the EUG/NR blends, indicating the synergistic effect of g-CN@FeO. Finally, a possible degradation mechanism of EUG/NR blend composites was proposed.
通过共沉淀法,以石墨化氮化碳(g-CN)和FeO为原料设计了一种阻燃增效剂(g-CN@FeO),并用傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)和X射线光电子能谱(XPS)对其结构进行了表征。将一系列不同含量的g-CN@FeO和膨胀型阻燃剂(IFR)同时添加到杜仲胶/天然橡胶(EUG/NR)共混物中,以提高其阻燃性并减少烟雾释放。通过极限氧指数(LOI)、UL-94、锥形量热测试(CCT)和热重分析(TGA)对EUG/NR共混物的阻燃性、抑烟性能、热降解行为和热稳定性进行了评估。结果表明,使用g-CN@FeO作为阻燃增效剂时,9 phr g-CN@FeO增效剂(EUG/NR 5)共混物的LOI值为29.5%,远高于原始复合材料的20.0%。此外,6 phr g-CN@FeO增效剂(EUG/NR 4)和EUG/NR 5通过了UL-94 V-0等级,而原始的EUG/NR共混物未达到任何等级。此外,在CCT测试中,EUG/NR共混物的总热释放速率(THR)、热释放速率峰值(PHRR)和总产烟量(TSP)远低于原始的EUG/NR共混物。特别是,EUG/NR 5的PHRR、THR和TSP分别下降了37.1%、16.2%和18.0%。这表明g-CN@FeO的引入减少了可燃气体的释放。TGA结果还表明,g-CN@FeO的添加加速了EUG/NR共混物的热降解,并改变了EUG/NR共混物的热降解机理,表明了g-CN@FeO的协同作用。最后,提出了EUG/NR共混物复合材料可能的降解机理。