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Flame Inhibition and Charring Effect of Aromatic Polyimide and Aluminum Diethylphosphinate in Polyamide 6

机译:聚酰胺6中芳香聚酰亚胺和二乙基次膦酸铝的阻燃和炭化作用。

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摘要

An aromatic macromolecular polyimide (API) was synthesized and characterized, and used as a synergistic charring flame retardant in glass fiber reinforced polyamide 6 (GF/PA6). API and aluminum diethylphosphinate (ADP) exhibited better flame inhibition behavior and synergistic charring flame retardant behavior compared with ADP alone. The 5%API/7%ADP/GF/PA6 sample achieved the lower peak value of the heat release rate (pk-HRR) at 497 kW/m2 and produced higher residue yields of 36.1 wt.%, verifying that API and ADP have an outstanding synergistic effect on the barrier effect. The API/ADP system facilitated the formation of a carbonaceous, phosphorus and aluminum-containing compact char layer with increased barrier effect. FTIR spectra of the residue and real-time TGA-FTIR analysis on the evolved gases from PA6 composites revealed that API interacted with ADP/PA6 and locked in more P–O–C and P–O–Ar content, which is the main mechanism for improving flame inhibition and charring ability. In addition, the API/ADP system improved the mechanical properties and corrosion resistance of GF/PA6 composites compared to ADP alone.
机译:合成和表征了芳香族高分子聚酰亚胺(API),并在玻璃纤维增​​强聚酰胺6(GF / PA6)中用作协同炭化阻燃剂。与单独使用ADP相比,API和二乙基次膦酸铝(ADP)表现出更好的阻燃性能和协同炭化阻燃性能。 5%API / 7%ADP / GF / PA6样品在497 kW / m 2 时实现了较低的放热速率峰值(pk-HRR),并产生了36.1 wt。%的更高残留量。 %,证明API和ADP对屏障效应具有出色的协同作用。 API / ADP系统有助于形成碳质,磷和铝的致密炭层,并具有增强的阻隔效果。残留物的FTIR光谱和对PA6复合物放出气体的实时TGA-FTIR分析表明,API与ADP / PA6相互作用并锁定了更多的P–O–C和P–O–Ar含量,这是主要机理用于改善火焰抑制和炭化能力。此外,与单独使用ADP相比,API / ADP系统改善了GF / PA6复合材料的机械性能和耐腐蚀性。

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