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首页> 外文期刊>Indian Journal of Science and Technology >Solubility Parameter for Copolymer used Additives for Lubricating Oil
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Solubility Parameter for Copolymer used Additives for Lubricating Oil

机译:共聚物用润滑油添加剂的溶解度参数

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Obiectives: In this article I have been looking at the determination of the solubility parameter by two methods for an additive hydrogenated poly (isoprene-co-styrene) used in lubricating oils. To determine the solubility parameter, it is necessary to know the intrinsic viscosities of the polymer hydrogenated poly (isoprene-co-styrene) in as many solvents with different solubility parameters. Methods: The viscosities of the dilute solutions copolymer hydrogenated poly (isoprene- co-styrene) were determined using Oa and I viscosimeters of the Ubbelodhe Schott capillary-type Viscosimeter set with the 0.04887 and 0.00976 constants at 25°C±0,1°C. From the values obtained for intrinsic viscosities it is concluded that the best solvent for this copolymer is cyclohexane, followed by trichlorethylene, carbon tetrachloride and SAE 10 W oil, and benzene is the weakest. Huggins constants, calculated from the intrinsic viscosity values obtained by extrapolating the reduced viscosities to the zero concentration of the copolymer, have values less than 0.4 for all four solvents. Findings: The value of the overall solubility parameter is comparable to the previous copolymer, which reflects its lack of polarity, and those due to polar interactions and hydrogen bonds are also very small: 1.2 (MPa)1/2 for those obtained by the Hansen method and between 1.4 and 2.4 (MPa)1/2 if the improved one is used. Analyzing the values determined by the two methods it is found that for the partial solubility parameters differences between 0.2 and 1.2 (MPa)1/2 are obtained, due to the intrinsic viscosity intake and the method of determination used. The difference between the global solubility parameters determined by the two methods is 0.4 (MPa)1/2. A larger difference also occurs in the sphere of solubility sphere: the obtained with the improved method is almost 30% lower, which means that fewer solvents are found in the sphere of solubility. The improved method applied to the studied copolymer used as an additive for lubricating oils is much more precise than the Hansen method. The solvents used are mostly included within the scope of the action sphere in the improved method. Application: Determination of the partial and global solubility parameters hydrogenated poly (isoprene-co-styrene) was done, first, using the Hansen method, then by an improved method. The improved method for determining the solubility parameter is much more precise than the Hansen method.
机译:目的:在本文中,我一直在研究通过两种方法测定润滑油中使用的添加剂氢化聚(异戊二烯-共-苯乙烯)的溶解度参数。为了确定溶解度参数,必须知道在许多具有不同溶解度参数的溶剂中,聚合物氢化聚(异戊二烯-共-苯乙烯)的特性粘度。方法:使用Ubbelodhe Schott毛细管型粘度计的Oa和I粘度计,在25°C±0.1°C时的常数为0.04887和0.00976,测定稀溶液共聚物氢化聚(异戊二烯-共苯乙烯)的粘度。 。从获得的特性粘度值可以得出结论,该共聚物的最佳溶剂是环己烷,其次是三氯乙烯,四氯化碳和SAE 10 W油,苯是最弱的。由通过将降低的粘度外推至共聚物的零浓度而获得的特性粘度值计算出的霍金斯常数对于所有四种溶剂均具有小于0.4的值。结果:总溶解度参数的值可与以前的共聚物相媲美,这反映了其缺乏极性,并且由于极性相互作用和氢键而产生的那些也非常小:Hansen获得的那些为1.2(MPa)1/2如果使用改进的方法,则在1.4至2.4(MPa)1/2之间。分析通过两种方法确定的值,发现对于部分溶解度参数,由于特性粘度的摄入和所使用的确定方法,在0.2和1.2(MPa)1/2之间获得了差异。通过两种方法确定的整体溶解度参数之差为0.4(MPa)1/2。溶解度范围也发生较大的差异:采用改进方法获得的溶液几乎降低了30%,这意味着在溶解度范围内发现的溶剂较少。应用于研究的用作润滑油添加剂的共聚物的改进方法比Hansen方法精确得多。在改进的方法中,所使用的溶剂主要包括在作用范围内。应用:首先,使用Hansen方法,然后通过改进方法,确定氢化聚(异戊二烯-共苯乙烯)的部分和整体溶解度参数。确定溶解度参数的改进方法比Hansen方法精确得多。

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