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首页> 外文期刊>Polymers for advanced technologies >Phosphorus-containing Salen-metal complexes investigated for enhancing the fire safety of thermoplastic polyurethane (TPU)
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Phosphorus-containing Salen-metal complexes investigated for enhancing the fire safety of thermoplastic polyurethane (TPU)

机译:含磷的盐金属配合物研究,用于增强热塑性聚氨酯(TPU)的火灾安全性

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摘要

Three novel phosphorus-containing Salen-based derivatives (Salen-DPCP-M: M = Ni, Zn, and Mn), which include both phenyl phosphate structures (DPCP) and Salen-metal complexes, were prepared for enhancing the fire safety of thermoplastic polyurethane (TPU). Thermogravimetric analysis (TGA) showed that Salen-DPCP-M altered the thermal degradation pathways of TPU probably due to the phosphorus-containing structure of Salen-DPCP-M. The cone calorimeter test showed that the addition of 3 wt% of Salen-DPCP-Ni, Salen-DPCP-Zn, and Salen-DPCP-Mn lowered the peak of heat release rate (PHRR) from 1495 kW/m(2) for neat TPU to 690, 875, and 813 kW/m(2), respectively, for the TPU composites, which demonstrated that Salen-DPCP-M improved the fire safety of TPU. In addition, the release of toxic CO gas from the Salen-DPCP-Ni/TPU and Salen-DPCP-Zn/TPU composites was reduced by 78.2% and 80.0%, respectively. The results of TGA/infrared spectrometry (TG-FTIR) showed that the incorporation of Salen-DPCP-Ni promoted the release CO2, while reducing the formation of harmful gases. Laser Raman spectroscopy (LRS) and scanning electron microscopy (SEM) showed that Salen-DPCP-Ni/TPU and Salen-DPCP-Zn/TPU composites formed a dense and stable char layer. Herein, the mechanism of these flame retardants containing novel phosphorus-containing Salen-metal complexes is also proposed.
机译:制备包括苯基磷酸盐结构(DPCP)和盐金属配合物的三种新的基于磷酸盐的盐酸衍生物(Salen-DPCP-M:M = Ni,Zn和Mn),以提高热塑性塑料的火灾安全性聚氨酯(TPU)。热重分析(TGA)表明,Salen-DPCP-M可能由于Salen-DPCP-M的含磷结构而改变了TPU的热降解途径。锥形量热计测试显示,添加3wt%的Salen-DPCP-Ni,Salen-DPCP-Zn和Salen-DPCP-Mn降低了来自1495 kW / m(2)的热释放速率(PHRR)的峰值对于TPU复合材料,分别纯净TPU至690,875和813 kW / m(2),这证明了Salen-DPCP-M改善了TPU的火灾安全性。此外,来自Salen-DPCP-Ni / TPU和Salen-DPCP-Zn / TPU复合材料的毒性CO气体分别降低了78.2%和80.0%。 TGA /红外光谱法(TG-FTIR)的结果表明,Salen-DPCP-Ni的掺入促进释放CO2,同时降低了有害气体的形成。激光拉曼光谱(LRS)和扫描电子显微镜(SEM)显示Salen-DPCP-Ni / TPU和Salen-DPCP-Zn / TPU复合材料形成了致密且稳定的炭层。在此,还提出了含有新型含磷盐金属配合物的这些阻燃剂的机制。

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