Department of Mechanical Engineering, Changwon National University, Changwon, Republic of Korea.
Department of Mechanical Engineering, HITEC University, Taxila Cantt, Pakistan.
Carbohydr Polym. 2017 Jul 15;168:201-211. doi: 10.1016/j.carbpol.2017.03.036. Epub 2017 Mar 16.
This article highlights the development of biodegradable flame-retardant composites using a compression technique on low-cost starch, flax fabric (FF) and ammonium polyphosphate (APP) raw materials. The starch was plasticized into thermoplastic starch through a mechano-ball milling process and composites were developed by reinforcing the FF and incorporating varying amounts of APP. The effects of APP on the flammability and thermal properties of the composites were studied. Limited oxygen index and horizontal-burning tests exhibited significant sustainability of the composites toward flame and direct flame self-extinguishment. It was observed that at higher temperatures, APP leads to formation of thermally stable char. The flame retardant properties of the composites were speculated to be due to the protective compact crosslinked network (POP and POC) of the char. The reported effects of APP include improvement in mechanical and biodegradation properties. This investigation provides the design of novel flame-retardant green composites with excellent properties.
本文采用压缩技术,以低成本的淀粉、亚麻织物(FF)和磷酸铵(APP)为原料,开发了可生物降解的阻燃复合材料。淀粉通过机械球磨工艺塑化成为热塑性淀粉,并通过增强 FF 和添加不同量的 APP 来制备复合材料。研究了 APP 对复合材料的可燃性和热性能的影响。极限氧指数和水平燃烧测试表明,复合材料具有显著的阻燃性和直接火焰自熄性。研究发现,在较高温度下,APP 会导致热稳定炭的形成。推测复合材料的阻燃性能归因于炭的保护性紧密交联网络(POP 和 POC)。APP 的作用包括改善机械性能和生物降解性能。本研究为设计具有优异性能的新型阻燃绿色复合材料提供了参考。