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Extended Shear Stability of Viscosity Index Improvers in Lubricating Oils

机译:粘度指数改善润滑油的延长剪切稳定性

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The ability of oil to retain its viscometric properties is particularly important in Heavy Duty Engine Oil applications to prevent wear and maintain intended levels of oil pressure. It is known that mechanical shearing of the oil, fuel dilution, oil oxidation and soot level all affect the aged oil kinematic viscosity at 100°C (KV100). For API CJ-4, as well as for many OEMs, an oil's KV100 must stay within the original viscosity grade as defined by SAE J300 after 90 cycles in the Kurt-Orbahn (KO) apparatus. This study investigates the effect of polymer chemistry and structure on extended shear stability of lubricating oils by evaluating the performance of two Viscosity Index Improver (VII) chemistries, Olefin Copolymer (OCP) and Hydrogenated Styrene Isoprene (HSI), under more severe shearing conditions than required for CJ-4. These technologies were evaluated in the KO shear test up to 700 cycles and the KRL shear test up to 8 hours. The KRL has been proposed as a possible alternative to the KO test, and extended KO shearing beyond 90 cycles provides a better indicator than the standard 90 cycle test for performance under severe conditions, as demonstrated by historical field test data. The rate of viscosity loss for OCPs diminishes to a low plateau after 90 cycles in the KO test, while viscosity loss with HSI chemistry continues at a high steady rate well beyond 90 cycles. The difference between chemistries is attributed to polymer structure and molecular weight. In conclusion, OCP chemistry is found to provide advantages in retaining viscosity after extended shear.
机译:油预留其粘度性能的能力在重型发动机油应用中尤为重要,以防止磨损和维持有预期的油压水平。众所周知,油,燃料稀释,油氧化和烟灰水平的机械剪切所有都会影响100℃(KV100)的老化的油运动粘度。对于API CJ-4以及许多OEM,石油的KV100必须保持在Kurt-Otbahn(KO)设备中90个循环后SAE J300定义的原始粘度等级内。本研究通过评估了两种粘度指数改进剂(VII)化学物质,烯烃共聚物(OCP)和氢化苯乙烯异戊二烯(HSI),在更严重的剪切条件下,研究了聚合物化学和结构对润滑油的延长剪切稳定性的影响。在更严重的剪切条件下CJ-4需要。这些技术在KO剪切试验中评估了高达700次循环,KRL剪切试验长达8小时。 KRL已提出作为KO测试的可能替代方案,并且超过90个循环的扩展KO剪切提供比历史现场测试数据在严重条件下的性能下的标准90循环测试更好的指标。在KO试验中90次循环后,OCP的粘度损失率将减少到低平台,而HSI化学的粘度损失在高于90周期的高稳定速率下持续。化学物质之间的差异归因于聚合物结构和分子量。总之,发现OCP化学在延长剪切后保持粘度的优点。

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