Zou Q C, Peng S J, Chen S Z
Analytical Centre of Faculty of Chemistry and Material Science, Hubei University, Wuhan 430062, China.
Se Pu. 2000 Jan;18(1):17-20.
An investigation was made on the thermodynamic parameters chi'23 of the polymer system polyvinyl chloride (PVC)/ethylene-vinyl acetate copolymer(EVA) by inverse gas chromatogrphy(IGC), and the miscibility of the blends was studied by using chi'23 as judging foundation, and it was preliminary discussed the relation between chi'23 and composition of the blend, and molecules-chain structure of polymer, and temperature. The influence of the property of probes on chi'23 was also discussed. Results showed thermodynamic miscibility for PVC/EVA blend was accurately and directly indicated by chi'23. Experimental data confirmed the conclusion reported by other studies. It was immiscible for blends of which the acetate content was lower in EVA copolymer. The experimental temperature was favorable for improving miscibility of blends. The medium content in EVA copolymer resulted in partial miscibility for the blend, but the phase-seperation appeared when the experimental temperature was raised. This is in agreement with the previous studies on polymer blends. The apparent interaction parameter was found to be dependent on the chemical nature of the probe, the values of chi'23 were very different, but most experimental data show the same general trend with temperature and composition of blends.
采用反相气相色谱法(IGC)对聚氯乙烯(PVC)/乙烯-醋酸乙烯酯共聚物(EVA)聚合物体系的热力学参数χ23进行了研究,并以χ23为判断依据研究了共混物的相容性,初步探讨了χ23与共混物组成、聚合物分子链结构以及温度之间的关系。还讨论了探针性质对χ23的影响。结果表明,χ23能准确、直接地反映PVC/EVA共混物的热力学相容性。实验数据证实了其他研究报道的结论。EVA共聚物中醋酸酯含量较低的共混物是不相容的。实验温度有利于提高共混物的相容性。EVA共聚物中的中等含量导致共混物部分相容,但升高实验温度时会出现相分离。这与之前关于聚合物共混物的研究一致。发现表观相互作用参数取决于探针的化学性质,χ23的值差异很大,但大多数实验数据显示出随温度和共混物组成的相同总体趋势。