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The effects of polybenzimidazole and polyacrylic acid modified carbon black on the anti-UV-weathering and thermal properties of polyvinyl chloride composites

机译:聚苯并咪唑和聚丙烯酸改性炭黑对聚氯乙烯复合材料的抗紫外线老化和热学性能的影响

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摘要

In this study, the effects of polybenzimidazole (PBI) and polyacrylic acid (PAA) modified carbon black (MCB) on the anti-UV-weathering and thermal properties of PVC composites were investigated. The optimal mass ratios of PBI and MCB to PVC are 0.1 wt% and 0.2 wt%, respectively, and the resultant 1PBI/2MCB/PVC composite membrane with a thickness of about 60 mu m can block over 99% of UV light below 380 nm. The UV absorption mechanism was investigated by the optional band gap (Eg) and the fluorescence spectroscopy. The incorporation of PBI and MCB results in a decrease in Eg, from 4.96 eV for PVC membrane to 2.90 eV for 1PBI/2MCB/PVC composite membrane, and MCB can quench the fluorescence of PBI by photon-induced electron transfer to further protect PVC. The results of accelerated UV-weathering experiment indicate that the incorporation of PBI and MCB can improve the anti-UV-weathering property of PVC. The thermal degradation behaviors of PVC and its composite membranes in air and N-2 atmosphere were also investigated. The highest char residue (13.7 wt%) is obtained in 1PBI/2MCB/PVC composite membrane at 800 degrees C in N-2 atmosphere, with an increase of 73.4% compared with that of PVC membrane, which may be because PBI and MCB can synergistically accelerate the carbonization of PVC molecules to rapidly form stable char residue.
机译:在这项研究中,研究了聚苯并咪唑(PBI)和聚丙烯酸(PAA)改性炭黑(MCB)对PVC复合材料的抗紫外线风化和热性能的影响。 PBI和MCB与PVC的最佳质量比分别为0.1 wt%和0.2 wt%,并且所得的厚度约为60μm的1PBI / 2MCB / PVC复合膜可以阻挡380 nm以下的99%的紫外线。通过可选的带隙(Eg)和荧光光谱研究了UV吸收机理。 PBI和MCB的结合导致Eg降低,从PVC膜的4.96 eV降至1PBI / 2MCB / PVC复合膜的2.90 eV,MCB可以通过光子诱导的电子转移来淬灭PBI的荧光,从而进一步保护PVC。加速紫外线风化试验的结果表明,PBI和MCB的掺混可以提高PVC的抗紫外线风化性能。还研究了PVC及其复合膜在空气和N-2气氛中的热降解行为。在N-2气氛中,在800摄氏度下于1PBI / 2MCB / PVC复合膜中获得了最高的残炭(13.7 wt%),比PVC膜增加了73.4%,这可能是因为PBI和MCB可以协同促进PVC分子的碳化,从而迅速形成稳定的炭渣。

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