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A Chromatographic Study of Shear Stability of Poly(styrene-co-alkyl methacrylate) Viscosity Modifier for Lubricating Oils

机译:润滑油用聚苯乙烯-甲基丙烯酸烷基酯共聚物粘度调节剂的色谱稳定性研究

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摘要

Shear stability of styrene, dodecyl methacrylate, and octadecyl methacrylate terpolymer of various molecular weights, as the rheology modifier of improved solubility, thermal and oxidation stability in mineral base oil, was investigated. Viscosity loss of the 5 wt% solutions caused by scission of macromolecules subjected to the high shear forces ranges between 15% and 27% for weight average molecular weights from 156000 to 252000. After the shear tests the number average molecular weights of polymer increases while weight and Z-average molecular weights decrease. As macromolecules of molecular weights above 700000 fully break the molar-mass dispersity decreases significantly, from starting at 2.34-2.79 down to below 1.8. A linear dependence between viscosity loss of terpolymer solutions and molecular weights was observed. The advantage of using the size exclusion chromatography to determine the stability of the polymer against mechanical shear directly and the viscosity loss indirectly was established.
机译:研究了不同分子量的苯乙烯,甲基丙烯酸十二烷基酯和甲基丙烯酸十八烷基酯三元共聚物的剪切稳定性,以此作为改善矿物基础油中溶解度,热和氧化稳定性的流变改性剂。对于重均分子量从156000到252000的高剪切力,大分子的剪切导致的5%溶液的粘度损失在15%到27%之间。在剪切测试后,聚合物的数均分子量增加,而重量Z均分子量降低。当分子量大于700000的大分子完全断裂时,摩尔质量分散度会从2.34-2.79开始下降到1.8以下。观察到三元共聚物溶液的粘度损失与分子量之间存在线性关系。建立了使用尺寸排阻色谱法直接确定聚合物抵抗机械剪切和间接损失粘度的稳定性的优势。

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