Yang Xue, Wang Hao, Liu Xueqing, Liu Jiyan
Institute of Noise and Vibration, Naval University of Engineering, Wuhan 430033, People's Republic of China.
Key Laboratory of Optoelectronic Chemical Materials and Devices (Ministry of Education), Flexible Display Materials and Technology Co-innovation Center of Hubei Province, Jianghan University, Wuhan 430056, People's Republic of China.
R Soc Open Sci. 2020 Sep 9;7(9):200800. doi: 10.1098/rsos.200800. eCollection 2020 Sep.
A novel nitrogen-containing alkylphosphinate salt-aluminium β-(p-nitrobenzamide) ethyl methyl phosphinate (AlNP) was synthesized and used to flame retard acrylonitrile-butadiene-styrene copolymer (ABS). The Fourier transform infrared spectrometry, H, C and P nuclear magnetic resonance and X-ray fluorescent spectroscopy (XRF) were applied to characterize the structure and composition of products. The flame retardancy performance, thermal properties and mechanical strength of the ABS/AlNP with respect to AlNP loading were investigated. AlNP was stable before 330°C and decomposed very slowly with residues high up to 56.1% at 700°C. Adding 25-30 wt% of AlNP alone can make ABS to pass V0 rating in the vertical burning tests (UL 94). The results according to the micro combustion calorimeter, thermogravimetric analysis showed that AlNP can depress the heating release and retard the thermal degradation of the ABS. Scanning electron microscopy observation of the residues from LOI test indicated that AlNP formed the condensed and tough residues layer during combustion; XRF analysis showed that the residues contained phosphorus and aluminium element and nitrogen element was not detected. The compact phosphorus/aluminium-rich substance acted as a barrier to enhance flame-retardant properties of the ABS.
合成了一种新型含氮烷基次膦酸盐——铝β-(对硝基苯甲酰胺)乙基甲基次膦酸盐(AlNP),并将其用于阻燃丙烯腈-丁二烯-苯乙烯共聚物(ABS)。采用傅里叶变换红外光谱、H、C和P核磁共振以及X射线荧光光谱(XRF)对产物的结构和组成进行了表征。研究了不同AlNP添加量的ABS/AlNP的阻燃性能、热性能和机械强度。AlNP在330℃之前稳定,分解非常缓慢,在700℃时残渣高达56.1%。单独添加25-30 wt%的AlNP可使ABS在垂直燃烧试验(UL 94)中达到V0等级。微燃烧量热仪和热重分析结果表明,AlNP可降低ABS的热释放速率并延缓其热降解。极限氧指数测试残渣的扫描电子显微镜观察表明,AlNP在燃烧过程中形成了致密且坚韧的残渣层;XRF分析表明,残渣中含有磷和铝元素,未检测到氮元素。致密的富磷/铝物质起到了阻隔作用,提高了ABS的阻燃性能。