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用于提高EVA的阻燃性、热稳定性、抑烟性和机械性能的高效复合阻燃剂

Highly Efficient Composite Flame Retardants for Improving the Flame Retardancy, Thermal Stability, Smoke Suppression, and Mechanical Properties of EVA.

作者信息

Liu Yilin, Li Bin, Xu Miaojun, Wang Lili

机构信息

College of Chemistry, Chemical Engineering and Resource Utilization, Northeast Forestry University, Harbin 150040, China.

出版信息

Materials (Basel). 2020 Mar 10;13(5):1251. doi: 10.3390/ma13051251.

Abstract

Ethylene vinyl acetate (EVA) copolymer has been used extensively in many fields. However, EVA is flammable and releases CO gas during burning. In this work, a composite flame retardant with ammonium polyphosphate (APP), a charring-foaming agent (CFA), and a layered double hydroxide (LDH) containing rare-earth elements (REEs) was obtained and used to improve the flame retardancy, thermal stability, and smoke suppression for an EVA matrix. The thermal analysis showed that the maximum thermal degradation temperature of all composites increased by more than 37 °C compared with that of pure EVA. S-LaMgAl/APP/CFA/EVA, S-CeMgAl/APP/CFA/EVA, and S-NdMgAl/APP/CFA/EVA could achieve self-extinguishing behavior according to the UL-94 tests (V-0 rating). The peak heat release rate (pk-HRR) indicated that all LDHs containing REEs obviously reduced the fire strength in comparison with S-MgAl. In particular, pk-HRR of S-LaMgAl/APP/CFA/EVA, S-CeMgAl/APP/CFA/EVA and S-NdMgAl/APP/CFA/EVA were all decreased by more than 82% in comparison with pure EVA. Furthermore, the total heat release (THR), smoke production rate (SPR), and production rate of CO (COP) also decreased significantly. The average mass loss rate (AMLR) confirmed that the flame retardant exerted an effect in the condensed phase of the composites. Meanwhile, the combination of APP, CFA, and LDH containing REEs allowed the EVA matrix to maintain good mechanical properties.

摘要

乙烯-醋酸乙烯酯(EVA)共聚物已在许多领域得到广泛应用。然而,EVA具有易燃性,燃烧时会释放一氧化碳气体。在本研究中,制备了一种由聚磷酸铵(APP)、成炭发泡剂(CFA)和含稀土元素(REEs)的层状双氢氧化物(LDH)组成的复合阻燃剂,并将其用于提高EVA基体的阻燃性、热稳定性和抑烟性能。热分析表明,与纯EVA相比,所有复合材料的最大热降解温度均提高了37℃以上。根据UL-94测试(V-0等级),S-LaMgAl/APP/CFA/EVA、S-CeMgAl/APP/CFA/EVA和S-NdMgAl/APP/CFA/EVA能够实现自熄行为。峰值热释放速率(pk-HRR)表明,与S-MgAl相比,所有含稀土元素的LDH均显著降低了火灾强度。特别是,与纯EVA相比,S-LaMgAl/APP/CFA/EVA、S-CeMgAl/APP/CFA/EVA和S-NdMgAl/APP/CFA/EVA的pk-HRR均降低了82%以上。此外,总热释放(THR)、产烟速率(SPR)和一氧化碳生成速率(COP)也显著降低。平均质量损失率(AMLR)证实了阻燃剂在复合材料的凝聚相中发挥了作用。同时,APP、CFA和含稀土元素的LDH的组合使EVA基体保持了良好的力学性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cda1/7085045/27214d7b324c/materials-13-01251-g001.jpg

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