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Formulation of multigrade gear oils for high efficiency and low-operating temperature

机译:制定多齿轮油,用于高效率和低工作温度

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The major targets of transmission design today are higher efficiency, higher torque capacity and reduced size. Increasingly smaller transmissions with higher torque lead to increasing operating temperatures. This trend is further intensified by the use of noise abatement devices and improved aerodynamic body styling that reduces the airflow around transmissions. The friction in the transmission is responsible for temperature increase and efficiency losses, and thus the reduction of friction is the main measure in order to improve the efficiency and to keep the operating temperature low. The lubricant influences and is subjected to all changes of operating conditions. Higher operating temperatures result in a higher consumption of friction modifiers, extreme pressure and anti-wear additives, higher corrosion and oxidation rates, and a thinner oil film separating the various components. If the lubricant is not formulated to withstand these more severe conditions the transmission may be damaged. On the other hand, the torque transmission losses and, as a consequence, the operating temperature can be reduced by the right choice of base oil and additives. In vehicle application today, most OEMs start the lubricant development in an early phase of the development of a new transmission in order to get the optimum contribution of the lubricant. These OEMs see the lubricant as a construction element needed for the development of performance optimized transmissions. In order to select the most effective combination of additives and base stocks offered by the lubricant industry, the OEMs have developed screening tests with good correlation to field performance. Such tests range from a simple bearing test to OEM- specific transmission or axle tests. We have used two tests developed by VW, that correlate well with a car installed on a chassis-dynamometer and a transmission rig test, in order to identify and quantify the influences of fluid viscosity, base stock types, and VI Improver chemistry on efficiency and operating temperature. Finally, examples of improved semi- and fully synthetic formulations with significantly reduced operating temperatures and optimum efficiency are presented.
机译:目前传输设计的主要目标是更高的效率,更高的扭矩容量和减小的尺寸。具有更高扭矩的越来越较小的变速器导致更高的操作温度。通过使用噪声减排装置和改进的空气动力学车身造型进一步加强了这种趋势,从而减少了传输周围的气流。传输中的摩擦负责升温和效率损失,因此摩擦的降低是主要措施,以提高效率并保持工作温度低。润滑剂影响并受到操作条件的所有变化。更高的操作温度导致摩擦改性剂的较高消耗,极限压力和抗磨损添加剂,更高的腐蚀和氧化速率,以及分离各种组分的较薄的油膜。如果不配制润滑剂以承受这些更严重的条件,则变速器可能会损坏。另一方面,扭矩传递损失和因此,通过正确的基础油和添加剂的选择可以减少操作温度。在今天的车辆应用中,大多数OEM开始在开发新传播的早期阶段开始润滑油开发,以获得润滑剂的最佳贡献。这些OEM将润滑剂视为开发性能优化变速器所需的建筑元件。为了选择润滑剂行业提供的添加剂和基础股的最有效组合,OEM已经开发出筛选测试,与现场性能良好相关。这种测试范围从一个简单的轴承测试到OEM特定的传输或轴轴测试。我们已经使用了VW开发的两个测试,该测试与安装在底盘测力计和传输钻机测试上的汽车相连,以识别和量化流体粘度,基础库存类型和VI改进化学对效率的影响工作温度。最后,提出了具有显着降低的操作温度和最佳效率的改进的半和全合成制剂的实例。

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