Li Mengqi, Chen Yajun, Kong Zimeng, Sun Zhe, Qian Lijun
School of Chemistry and Materials Engineering, Beijing Technology and Business University, Beijing 100048, China.
China Light Industry Engineering Technology Research Center of Advanced Flame Retardants, Beijing 100048, China.
ACS Omega. 2023 May 10;8(20):18151-18164. doi: 10.1021/acsomega.3c01464. eCollection 2023 May 23.
In many application fields of thermoplastic polyurethane (TPU), excellent flame retardancy and transparency are required. However, higher flame retardancy is often at the expense of transparency. It is difficult to achieve high flame retardancy while maintaining the transparency of TPU. In this work, a kind of TPU composite with good flame retardancy and light transmittance was obtained by adding a new synthetic flame retardant named DCPCD, which was synthesized by the reaction of diethylenetriamine and diphenyl phosphorochloridate. Experimental results showed that 6.0 wt % DCPCD endowed TPU with a limiting oxygen index value of 27.3%, passing the UL 94 V-0 rating in the vertical burning test. The cone calorimeter test results showed that the peak heat release rate (PHRR) of the TPU composite was dramatically reduced from 1292 kW/m (pure TPU) to 514 kW/m by adding only 1 wt % DCPCD. With the increase of DCPCD contents, the PHRR and total heat release gradually decreased, and the char residue gradually increased. More importantly, the addition of DCPCD has little effect on the transparency and haze of TPU composites. In addition, scanning electron microscopy, Raman spectroscopy, and X-ray photoelectron spectroscopy were carried out to investigate the morphology and composition of the char residue for TPU/DCPCD composites and explore the flame retardant mechanism of DCPCD in TPU.
在热塑性聚氨酯(TPU)的许多应用领域中,都需要优异的阻燃性和透明度。然而,较高的阻燃性往往是以牺牲透明度为代价的。要在保持TPU透明度的同时实现高阻燃性是很困难的。在这项工作中,通过添加一种名为DCPCD的新型合成阻燃剂,获得了一种具有良好阻燃性和透光率的TPU复合材料,该阻燃剂是由二乙烯三胺与二苯基磷酰氯反应合成的。实验结果表明,6.0 wt%的DCPCD使TPU的极限氧指数值达到27.3%,在垂直燃烧试验中通过了UL 94 V-0等级。锥形量热仪测试结果表明,仅添加1 wt%的DCPCD,TPU复合材料的热释放速率峰值(PHRR)就从1292 kW/m²(纯TPU)大幅降至514 kW/m²。随着DCPCD含量的增加,PHRR和总热释放逐渐降低,残炭逐渐增加。更重要的是,DCPCD的添加对TPU复合材料的透明度和雾度影响很小。此外,还进行了扫描电子显微镜、拉曼光谱和X射线光电子能谱分析,以研究TPU/DCPCD复合材料残炭的形态和组成,并探索DCPCD在TPU中的阻燃机理。