首页> 外文期刊>Journal of Dispersion Science and Technology >Poly(n-Alkyl Itaconate-Co-Vinyl Acetate) as Pour Point Depressants for Lube Oil in Relation to Rheological Flow Properties
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Poly(n-Alkyl Itaconate-Co-Vinyl Acetate) as Pour Point Depressants for Lube Oil in Relation to Rheological Flow Properties

机译:聚(衣康酸正烷基酯-乙酸乙酸乙烯酯)与流变性能相关的润滑油降凝剂

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In the present work, poly(n-alkyl itaconate-co-vinyl acetate) comb-like polymers were synthesized by radical copolymerization of n-alkyl itaconates of various alkyl chain length and vinyl acetate monomers for use as pour point depressants in lubricant oil. Initially four n-alkyl itaconate monomers were synthesized by esterification of itaconic acid with a series of n-alkyl alcohol, having different alkyl chain length C _(16)/C _(18)/NAFOL 20 + A (C _(av) = 20)/NAFOL 1822 B (C _(av) = 22). The copolymerization of these monomers with vinyl acetate was then performed using dibenzoyl peroxide in toluene at 120°C up to high conversion, with molar ratios of 0.25:0.75, 0.50:0.50, and 0.75:0.25 for alkyl itaconate: vinyl acetate. All products were characterized by FTIR, ~1H NMR and gel permeation chromatography (GPC). These copolymers were tested in terms of their suitability as pour point depressants and flow improvers for lube oil. The obtained data revealed that the prepared compounds depress the pour point of the lube oil successfully and the additive efficiency on the pour point reduction of the lube oil increases by increasing the concentration of these additives and by decreasing the alkyl chain length of n-alkyl itaconate. The rheological properties of lube oil (with and without copolymer additive) were studied in term of shear rate, shear stress and viscosity. The results indicated that the performance of flow improver was dependent on the copolymer compositions and the size of alkyl chain length of n-alkyl itaconate monomers. Poly(hexadecyl itaconate-co-vinyl acetate) with high content of vinyl acetate showed the best flow improver properties of lube oil. Comparison of morphologies and structures of wax crystals or aggregates in untreated and treated lube oil was also done by micro photographic studies which showed the modification in wax crystal morphology due to additives.
机译:在本工作中,通过将各种烷基链长的衣康酸正烷基酯与乙酸乙烯酯单体进行自由基共聚,来合成聚(衣康酸正烷基酯-乙酸乙烯酯共聚物)梳状聚合物,用作润滑油中的降凝剂。最初,衣康酸与一系列具有不同烷基链长C _(16)/ C _(18)/ NAFOL 20 + A(C _(av)的正烷基醇的酯化反应,合成了四个衣康酸正烷基酯单体= 20)/ NAFOL 1822 B(C _(av)= 22)。然后在120℃下使用过氧化二苯甲酰在甲苯中直至高转化率进行这些单体与乙酸乙烯酯的共聚,衣康酸烷基酯:乙酸乙烯酯的摩尔比为0.25:0.75、0.50:0.50和0.75:0.25。所有产品均通过FTIR,〜1H NMR和凝胶渗透色谱法(GPC)表征。对这些共聚物作为润滑油的降凝剂和流动改进剂的适用性进行了测试。获得的数据表明,所制备的化合物成功地降低了润滑油的倾点,并且通过增加这些添加剂的浓度并且通过减小衣康酸酯的正烷基的烷基链长度,增加了降低润滑油的倾点的添加剂效率。 。从剪切速率,剪切应力和粘度方面研究了润滑油(具有和不具有共聚物添加剂)的流变特性。结果表明,流动改进剂的性能取决于共聚物组成和衣康酸正烷基酯单体的烷基链长度的大小。乙酸乙烯酯含量高的聚(衣康酸十六烷基酯-乙酸乙烯酯)显示出最佳的润滑油流动改进性能。还通过显微照相研究比较了未处理和处理的润滑油中蜡晶体或聚集体的形态和结构,该研究表明由于添加剂的作用,蜡晶体形态发生了变化。

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