不饱和聚酯与丙烯酸自由基共聚反应的研究

A. Kovaleva, G. Burkeyeva, Y. Tazhbayev, D. Muslimova
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摘要

考虑到用于生产密封和粘合材料的现代技术的使用,各种成分的不饱和聚酯是一种有前途和廉价的原材料。本工作的目的是研究在二氧六烷溶液中,在不同摩尔比的初始聚合物-单体混合物中,聚乙烯(丙烯)-富马酸乙二醇与丙烯酸的自由基共聚反应。方法。通过对母液的分析,用高效液相色谱法对共聚物的组成进行了鉴定,并用红外光谱对其结构进行了确证。用膨胀法研究了共聚动力学。用重量法测定共聚物的溶胀度,用溴酸盐法测定共聚物的不饱和度。用梅奥-刘易斯积分法计算自由基共聚常数。结果表明,对于初始聚合物-单体混合物的任何组成,共聚物的组成都富含丙烯酸链,并且随着其在初始聚合物-单体混合物中含量的增加,反应速率显著增加。在最初的聚合物-单体混合物中不饱和聚酯含量的增加导致共聚物吸湿能力的下降,这使得它们有可能被用作生产密封和粘合材料的基础。结论。对共聚常数的数值分析表明,与不饱和聚酯相比,丙烯酸的活性更高,从而证实了之前提出的不饱和聚酯反应能力相对较低的假设。
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STUDY OF RADICAL COPOLYMERIZATION REACTION OF UNSATURATED POLYESTERS WITH ACRYLIC ACID
One of the promising and inexpensive types of raw materials, taking into account the use of modern technologies for the production of sealing and adhesive materials, are unsaturated polyesters of various compositions.The aimof this work is to study the reaction of radical copolymerization of polyethylene(propylene)-glycolfumarate with acrylic acid in a dioxane solution at various molar ratios of the initial polymer-monomer mixture. Methodology.The composition of the copolymers was identifiedby HPLC spectroscopy by analyzing the mother liquors, the structure was confirmed by IR spectroscopy. The copolymerization kinetics was studied by the dilatometric method. The degree of swelling of the copolymers was determined by the gravimetric method, and their degree of unsaturation, by the bromid-bromate method. Radical copolymerization constants calculated by the Mayo-Lewis integral method.The results obtainedindicate thatfor any composition of the initial polymer-monomer mixture, the composition of the copolymer is enriched with acrylic acid links, and with an increase in its content in the initial polymer-monomer mixture, the reaction rate increases significantly.An increase in the content of unsaturated polyester in the initial polymer-monomer mixture leads to a decrease in the ability of the copolymer to absorb moisture, which makes it possible to assume their use as bases in the production of sealing and adhesive materials. Conclusion. An analysis of the numerical values of the copolymerization constants showed a higher activity of acrylic acid in comparison with unsaturated polyesters, thereby confirming the previously put forward assumption aboutthe relatively lower reactive ability of the latter.
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