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The Effect of Cylinder De-Activation on Thermo-Friction Characteristics of the Connecting Rod Bearing in the New European Drive Cycle (NEDC)

机译:气缸去除对新欧洲驱动周期连杆轴承热摩擦特性的影响(NEDC)

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This paper presents an investigation of Cylinder De-Activation (CDA) technology on the performance of big end bearings. A multi-physics approach is used in order to take into account more realistic dynamic loading effects on the tribological behavior. The power loss, minimum film thickness and maximum temperature of big end bearings have been calculated during maneuver pertaining to the New European Driving Cycle (NEDC). Results show that bearing efficiency runs contrary to efficiency gained through combustion and pumping losses. Under CDA mode, the power loss of big end bearings is more than the power loss under engine normal mode. The problem is predominant at higher engine speeds and higher Brake mean Effective Pressures (BMEP) in active cylinders. It is also observed that the minimum film thickness is reduced under the CDA mode. This can affect wear performance. In addition, same behavior is noted for the maximum temperature rise which is higher under CDA.
机译:本文提出了对大端轴承性能的汽缸去激活(CDA)技术的研究。使用多物理方法,以考虑对摩擦学行为的更现实的动态负载效应。在与新欧洲驾驶循环(NEDC)有关的机动期间,已经计算了电力损耗,最大膜厚度和最大温度。结果表明,轴承效率与通过燃烧和泵送损耗获得的效率相反。在CDA模式下,大端轴承的功率损耗超过发动机正常模式下的功率损耗。该问题在更高的发动机速度下主要是优势,并且在活性汽缸中的更高的制动器平均有效压力(BMEP)。还观察到,在CDA模式下,最小膜厚度降低。这会影响磨损性能。此外,在CDA下更高的最高温度上升,应注意相同的行为。

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