Missio André L, Delucis Rafael A, Otoni Caio Gomide, de Cademartori Pedro H G, Coldebella Rodrigo, Aramburu Arthur B, Mattos Bruno D, Rodrigues Marlon B B, Lunkes Nayara, Gatto Darci A, Labidi Jalel
Graduate Program in Materials Science and Engineering (PPGCEM), Technology Development Center, Federal University of Pelotas (UFPel), Pelotas 96010-610, RS, Brazil.
Graduate Program in Environmental Sciences (PPGCAmb), Engineering Center, Federal University of Pelotas (UFPel), Pelotas 96010-610, RS, Brazil.
Polymers (Basel). 2022 Sep 7;14(18):3743. doi: 10.3390/polym14183743.
Flame-resistant materials are key components in buildings and several other engineering applications. In this study, flame retardancy and thermal stability were conferred to a highly flammable technical thermoplastic-polypropylene (PP)-upon compositing with a carbonaceous tannin-based particulate (CTP). Herein, we report on a straightforward, facile, and green approach to prepare self-extinguishing thermoplastic composites by thermoblending highly recalcitrant particulate. The thermal stability and mechanical properties of the composites are tethered to the CTP content. We demonstrate that the addition of up to 65 wt% of CTP improved the viscoelastic properties and hydrophobicity of the PP, whereas having marginal effects on bulk water interactions. Most importantly, compositing with CTP remarkably improved the thermal stability of the composites, especially over 300 °C, which is an important threshold associated with the combustion of volatiles. PP-CTP composites demonstrated great capacity to limit and stop fire propagation. Therefore, we offer an innovative route towards thermally resistant and self-extinguishing PP composites, which is enabled by sustainable tannin-based flame retardants capable of further broadening the technical range of commodity polyolefins to high temperature scenarios.
阻燃材料是建筑和其他一些工程应用中的关键部件。在本研究中,通过与含碳单宁基颗粒(CTP)复合,赋予了高度易燃的工业热塑性塑料——聚丙烯(PP)阻燃性和热稳定性。在此,我们报道了一种通过热共混高度难处理的颗粒来制备自熄性热塑性复合材料的直接、简便且绿色的方法。复合材料的热稳定性和机械性能与CTP含量相关。我们证明,添加高达65 wt%的CTP可改善PP的粘弹性和疏水性,而对整体水相互作用的影响较小。最重要的是,与CTP复合显著提高了复合材料的热稳定性,尤其是在超过300°C时,这是与挥发性物质燃烧相关的一个重要阈值。PP-CTP复合材料表现出很强的限制和阻止火焰蔓延的能力。因此,我们提供了一条通往耐热且自熄性PP复合材料的创新途径,这是由可持续的单宁基阻燃剂实现的,能够进一步将商品聚烯烃的技术范围扩展到高温场景。