Malkappa Kuruma, Bandyopadhyay Jayita, Ray Suprakas Sinha
Centre for Nanostructures and Advanced Materials, DSI-CSIR Nanotechnology Innovation Centre, Council for Scientific and Industrial Research, Pretoria 0001, South Africa.
Department of Chemical Sciences, University of Johannesburg, Doorfontein, Johannesburg 2028, South Africa.
ACS Omega. 2020 Jun 1;5(23):13867-13877. doi: 10.1021/acsomega.0c01247. eCollection 2020 Jun 16.
To obtain polyamide 6 (PA6) composites with improved flame retardancy and thermomechanical properties, highly cross-linked supramolecular poly(cyclotriphosphazene)-functionalized α-zirconium phosphate (f-ZrP) nanoplatelets were synthesized and melt-blended with PA6 in a twin-screw extruder. The performance enhancements of composites were investigated through measuring the dynamic mechanical property and observing cone calorimeter data, toxic gas evolution, and UL-94 rating. The thermomechanical performance of PA6 was increased by 37.2% after composite formation with f-ZrP. As for the fire retardancy performance, compared to neat PA6, the composite containing 10 wt % f-ZrP showed 41.7 and 30.4% decrease in the peak heat and total heat release rates, respectively, and the UL-94 rating of the composite was V-0. Moreover, the thermogravimetric analysis combined with infrared spectroscopy revealed that the addition of f-ZrP to the PA6 led to decrease in the evolution of the volatile compounds and toxic gases, with the formation of highly cross-linked P-N-containing dense char with microspheres, providing a strong barrier to the inhibition of the heat and flammable volatile components transferring between the flame zone area and substrate during the combustion test. Finally, based on the obtained results, the possible mechanisms for improved mechanical and fire retardancy properties of the composites were proposed.
为了获得具有改进的阻燃性和热机械性能的聚酰胺6(PA6)复合材料,合成了高度交联的超分子聚(环三磷腈)功能化α-磷酸锆(f-ZrP)纳米片,并在双螺杆挤出机中与PA6进行熔融共混。通过测量动态力学性能以及观察锥形量热仪数据、有毒气体释放和UL-94等级来研究复合材料的性能增强情况。与f-ZrP形成复合材料后,PA6的热机械性能提高了37.2%。至于阻燃性能,与纯PA6相比,含有10 wt% f-ZrP的复合材料的峰值热释放速率和总热释放速率分别降低了41.7%和30.4%,并且该复合材料的UL-94等级为V-0。此外,热重分析结合红外光谱表明,向PA6中添加f-ZrP导致挥发性化合物和有毒气体的释放减少,形成了具有微球的高度交联的含P-N致密炭,在燃烧测试期间为抑制火焰区与基材之间的热量和可燃挥发性成分的传递提供了强大的屏障。最后,基于所得结果,提出了复合材料机械性能和阻燃性能改善的可能机制。