Sanchez-Olivares Guadalupe, Sanchez-Solis Antonio, Manero Octavio, Pérez-Chávez Ricardo, Jaramillo Mario, Alongi Jenny, Carosio Federico
CIATEC, Asociación Civil, Omega 201, Colonia Industrial Delta, León 37545, Gto., Mexico.
Instituto de Investigaciones en Materiales, Universidad Nacional Autónoma de México, Avenida Universidad 3000, Ciudad de México 04510, Mexico.
Materials (Basel). 2019 Jul 26;12(15):2393. doi: 10.3390/ma12152393.
The high flame-retardant loading required for ethylene-vinyl acetate copolymer blends with polyethylene (EVA-PE) employed for insulation and sheathing of electric cables represents a significant limitation in processability and final mechanical properties. In this work, melamine triazine (TRZ) and modified bentonite clay have been investigated in combination with aluminum trihydroxide (ATH) for the production of EVA-PE composites with excellent fire safety and improved mechanical properties. Optimized formulations with only 120 parts per hundred resin (phr) of ATH can achieve self-extinguishing behavior according to the UL94 classification (V0 rating), as well as reduced combustion kinetics and smoke production. Mechanical property evaluation shows reduced stiffness and improved elongation at break with respect to commonly employed EVA-PE/ATH composites. The reduction in filler content also provides improved processability and cost reductions. The results presented here allow for a viable and halogen-free strategy for the preparation of high performing EVA-PE composites.
用于电缆绝缘和护套的乙烯 - 醋酸乙烯酯共聚物与聚乙烯的共混物(EVA - PE)所需的高阻燃剂负载量,在加工性能和最终机械性能方面构成了重大限制。在这项工作中,研究了三聚氰胺三嗪(TRZ)和改性膨润土与氢氧化铝(ATH)结合使用,以生产具有优异消防安全性能和改善机械性能的EVA - PE复合材料。根据UL94标准(V0等级),仅含120份每百份树脂(phr)ATH的优化配方即可实现自熄行为,同时降低燃烧动力学和烟雾产生。机械性能评估表明,相对于常用的EVA - PE/ATH复合材料,其刚度降低,断裂伸长率提高。填料含量的减少还改善了加工性能并降低了成本。此处呈现的结果为制备高性能EVA - PE复合材料提供了一种可行的无卤策略。