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首页> 外文期刊>European Polymer Journal >Miscibility and interactions of polystyrene/polyolefine and polystyrene/poly(n-alkyl methacrylate) mixtures in dilute xylene solutions
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Miscibility and interactions of polystyrene/polyolefine and polystyrene/poly(n-alkyl methacrylate) mixtures in dilute xylene solutions

机译:稀二甲苯溶液中聚苯乙烯/聚烯烃和聚苯乙烯/聚甲基丙烯酸正丁酯混合物的互溶性和相互作用

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The miscibility and intermolecular interactions between polystyrene (PS) and poly(ethylene-co-propylene) (EPC), as well as between PS and long-chain poly(alkyl methacrylates) (PAMA), namely, poly(dodecyl methacrylate) (PDDMA) and poly(octadecyl methacrylate) (PODMA), in dilute xylene solutions at 30 degrees C were studied. Investigated polymers are widely used as rheology modifiers, i.e. viscosity index improvers and pour point depressants for lubricating mineral oils. The specific and reduced viscosities of two- and three-component polymer solutions as well as intrinsic viscosities and Huggins' parameter values were determined as functions of the polymer mixture composition and overall polymer concentration. The reduced viscosity was found to be linearly dependent on the overall polymer concentration. The observed viscosities of polymer mixtures were intermediate to those of the mixture constituents, the values decrease in the order: EPC > PS > PAMA. The specific viscosities of all the polymer mixtures obtained as the experimental results and calculated applying the Catsiff-Hewett and Krigbaum-Wall theoretical equations were considered. Since all the polymer/polymer pairs showed the negative viscometric interaction parameter values (Delta b(12) < 0), the PS/EPC and EPC/PAMA mixtures were found to be immiscible. The observed repulsive molecular interactions originate from the differences in polymer composition and molar masses. This conclusion was supported by calculations employing the group contribution approach of Coleman, Graf and Painter. The calculated values of interaction parameters for (co)polymer blends, Lambda(12), were 5.47, 6.42 and 13.1 J cm(-3) for PS/PDDMA, PS/PODMA and PS/EPC, respectively. (C) 2005 Elsevier Ltd. All rights reserved.
机译:聚苯乙烯(PS)与聚(乙烯-丙烯共聚物)(EPC)之间以及PS与长链聚甲基丙烯酸烷基酯(PAMA),即聚甲基丙烯酸十二烷基酯(PDDMA)之间的混溶性和分子间相互作用)和聚甲基丙烯酸十八烷基酯(PODMA)在30摄氏度的稀二甲苯溶液中进行了研究。研究的聚合物被广泛用作流变改性剂,即用于润滑矿物油的粘度指数改进剂和降凝剂。确定两组分和三组分聚合物溶液的比浓和降低的粘度,以及特性粘度和Huggins参数值是聚合物混合物组成和总聚合物浓度的函数。发现降低的粘度与总聚合物浓度线性相关。所观察到的聚合物混合物的粘度处于混合物成分粘度的中间,其值依次降低:EPC> PS> PAMA。作为实验结果获得的所有聚合物混合物的比粘度,均采用Catsiff-Hewett和Krigbaum-Wall理论方程式进行了计算。由于所有聚合物/聚合物对均显示负粘度相互作用参数值(Delta b(12)<0),因此发现PS / EPC和EPC / PAMA混合物不混溶。观察到的排斥分子相互作用源自聚合物组成和摩尔质量的差异。这一结论得到了采用Coleman,Graf和Painter的小组贡献方法进行计算的支持。对于PS / PDDMA,PS / PODMA和PS / EPC,(共)聚合物共混物Lambda(12)的相互作用参数的计算值分别为5.47、6.42和13.1 J cm(-3)。 (C)2005 Elsevier Ltd.保留所有权利。

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