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Art of fuel economy lubricant formulation: How appropriate fuel economy assessment tools and new technologies are opening-up new formulation spaces for the next generation fuel economy lubricants

机译:燃油经济性润滑油制剂的艺术:如何适当的燃料经济性评估工具和新技术为下一代燃油经济性润滑剂开放新配方空间

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Designing fuel economy lubricants is an art; finding the right balance between fuel economy and durability requirements is complex, with many trade-offs. To open new formulation spaces with ever increasing fuel economy, a deep understanding of how lubricating oils respond to different drive cycles, engine/transmission type and any coating properties, e.g. DLC, is required. In this paper, we describe how the implementation of WLTC requires lubricant optimization to deliver improved fuel economy under this test cycle and therefore, lubricant viscosity reduction becomes more important. We also illustrate optimization of the sludge system is key to reducing overall viscosity of lubricants for ultra low viscosity application, such as in SAE 0W- 8 viscosity grade oils. To meet the cleanliness challenges in an SAE 0W-8 environment, we describe a developmental sludge handling system with improved cleanliness at constant viscosity to conventional SAE 0W-8 lubricants. A SAE 0W-8 demonstration oil with the developmental sludge handling system at equivalent sludge handling to a conventional system showed lower viscosity properties and demonstrated improved fuel economy performance in a motored rig test over baseline oil with a conventional technology.
机译:设计燃油经济性润滑剂是艺术品;找到燃油经济性和耐用性要求之间的合适平衡是复杂的,具有许多权衡。为了开辟燃料经济性不断增加的新配方空间,深入了解润滑油如何响应不同的驱动循环,发动机/透射型和任何涂层性能,例如, DLC,是必需的。在本文中,我们描述了WLTC的实施方式需要润滑剂优化在该试验周期下提供改善的燃料经济性,因此,润滑剂粘度降低变得更加重要。我们还说明了污泥系统的优化是降低润滑剂的整体粘度的关键,用于超低粘度应用,例如SAE 0W-8粘度级油。为了满足SAE 0W-8环境中的清洁挑战,我们描述了一种发展污泥处理系统,以恒定的粘度为常规SAE 0W-8润滑剂改善清洁度。 SAE 0W-8演示油与在等效污泥处理到传统系统的发育污泥处理系统显示出较低的粘度特性,并在与传统技术的基线油上的电动钻井平台测试中显示出改善的燃油经济性能。

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