含受阻酚微胶囊化氢氧化镁协同增强聚烯烃线缆材料的火安全性与抗老化性能

The synergistic enhancement of fire safety and anti-aging performance in polyolefin cable materials through the incorporation of hindered phenol and microencapsulated magnesium hydroxide

  • 摘要: 为开发兼具高效阻燃、优异力学与耐老化性能的聚烯烃(PO)线缆材料,本研究将含受阻酚双键单体(AO-HHA)通过自由基聚合成微胶囊化改性氢氧化镁(MH),成功制备多功能阻燃剂(AO@MH),并系统研究了其对PO复合线缆材料综合性能的影响。与纯PO线缆材料相比,PO/AO@MH复合材料的热释放速率峰值(PHRR)、总烟释放量(TSR)较纯PO分别降低69.5%和61.2%,CO与CO2释放速率峰值最大降幅达61.6%和68.1%,有效抑制燃烧烟毒性与火灾危险性危害;135℃热老化91天后PO/AO@MH断裂伸长率保留率仍为33%,表现出优异的长期抗老化性。这些结果表明,多功能阻燃剂AO@MH对提高PO复合线缆材料的火安全性、力学及抗老化性能具有良好的协同作用。该研究为设计长寿命、低火灾风险的高性能线缆材料提供了创新策略。

     

    Abstract: In order to develop a polyolefin (PO) cable material with efficient flame retardancy, excellent mechanical properties and aging resistance, this study synthesized microcapsulated magnesium hydroxide (MH) using the monomer containing blocked phenolic double bonds (AO-HHA) through free radical polymerization. A multifunctional flame retardant (AO@MH) was successfully prepared, and the comprehensive performance of theses PO composite cable materials were systematically investigated. Compared with pure PO cable material, the peak heat release rate and total smoke release of the PO/AO@MH composite material was reduced by 69.5% and 61.2%, respectively. The peak CO and CO2 release rates decreased by 61.6% and 68.1%, effectively inhibiting the harmful effects of combustion smoke toxicity and fire risk. After 91 days of thermal aging at 135℃, the retention rate of the elongation at break of PO/AO@MH was still 33%, demonstrating excellent long-term anti-aging performance. These results indicate that the multifunctional flame retardant AO@MH has a good synergistic effect on improving the fire safety, mechanical properties and anti-aging performance of the PO composite cable material. This research provides an innovative strategy for designing long-life and low fire-risk high-performance cable materials.

     

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