首页> 外文期刊>Journal of Applied Polymer Science >Transesterification and Crosslinking of Poly (vinyl chloride-co-vinyl acetate) Copolymers in the Melt
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Transesterification and Crosslinking of Poly (vinyl chloride-co-vinyl acetate) Copolymers in the Melt

机译:熔体中聚氯乙烯-乙酸乙烯酯共聚物的酯交换和交联

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摘要

A new method to obtain hydroxylated poly (vinyl chloride) (PVC-OH) and its crosslinking in the melt are studied. Starting from a vinyl chloride-co-vinyl acetate copolymer, a transesterification reaction in the presence of an alcohol during the processing of plasticized polymer is investigated as a function of the processing temperature and alcohol nature (1-butanol). Reaction evolution is followed by ~1H-NMR and IR spectroscopies. The best results are obtained for 1-octanol, and they show the absence of secondary reactions and the progressive appearance of OH groups in the polymer as acetate groups disappear. On the other hand, crosslinking of the thus-obtained PVC-OH wiht hexamethylene diisocyanate (HMDI) during the processing is also studied. The gel content and the mechanical properties at 140 deg C are studied as a function of three crosslinking variables: number of OH groups present in the polymer, concentration of HMDI added to the polymer, and time of crosslinking. The results show that by optimizing those parameters it is possible to obtain gel contents up to 100% and an increase of 600% in the Young's modulus and 1300% in the ultimate tensile strength with respect to the plasticized PVC.
机译:研究了获得羟基化聚氯乙烯(PVC-OH)及其在熔体中交联的新方法。从氯乙烯-乙酸乙烯酯共聚物开始,研究了在增塑聚合物的加工过程中,在醇的存在下,在醇的存在下的酯交换反应,该温度是加工温度和醇性质(1-丁醇)的函数。反应进行之后是〜1H-NMR和IR光谱。对于1-辛醇可获得最佳结果,并且它们表明不存在副反应,并且随着乙酸酯基团的消失,聚合物中的OH基团逐渐出现。另一方面,还研究了由此获得的PVC-OH与六亚甲基二异氰酸酯(HMDI)在加工过程中的交联。作为三个交联变量的函数,研究了凝胶含量和在140摄氏度下的机械性能:聚合物中存在的OH基团数,添加到聚合物中的HMDI浓度以及交联时间。结果表明,通过优化这些参数,可以获得相对于增塑PVC最高100%的凝胶含量,杨氏模量增加600%,极限拉伸强度增加1300%。

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