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Front End Accessory Drive Vibration Control Solutions for Engines With Cylinder Deactivation

机译:前端配件驱动振动控制解决方案,用于带气缸停用的发动机

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摘要

Recent internal combustion engine developments for passenger car and truck applications are incorporating cylinder deactivation in order to reduce fuel consumption. This strategy prevents combustion in half of the engine cylinders when power requirements are relatively low. The resulting irregularities from the reduced firing frequency adversely affect the front end accessory drive and require damping and/or tuning devices to lessen their severity. The scope of this paper is to investigate and recommend the best solution for vibration control, based on the increase of torsional energy in the drive. A "Design-of-Analysis" was created to methodically analyze different FEADs, with cylinder deactivation. Several tools were used to control the increased vibration including tensioner devices, multi-rib belt constructions, and alternator pulley devices. The possible solutions will be predicted through the simulation tool SIMDRIVE 3D, developed by Contecs, and then correlated with test data measured on the actual FEAD system.
机译:最近的乘用车和卡车应用的内燃机发动机融合了气缸停用,以减少燃料消耗。当功率要求相对较低时,该策略可防止发动机气缸的一半中的燃烧。从降低的烧制频率产生的不规则性不利地影响前端附件驱动器,并且需要阻尼和/或调谐器件以减少其严重程度。本文的范围是调查和推荐振动控制的基础上,扭转能量在驱动器中增加的最佳解决方案。创建了“分析设计”,以有条不紊地分析不同的粉丝,气缸失活。使用几种工具来控制增加的振动,包括张紧器装置,多肋带结构和交流发电机滑轮装置。通过Contecs开发的模拟工具模拟3D将预测可能的解决方案,然后与在实际的粉体系统上测量的测试数据相关联。

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