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Durability and Reliability Demonstration for Switching Roller Finger Follower in Cylinder Deactivation Systems

机译:汽缸停用系统中开关滚子手指簧片矫正器的耐久性和可靠性演示

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Cylinder deactivation (CDA) is an effective method to adjust the engine displacement for maximum output and improve fuel economy by adjusting the number of active cylinders in combustion engines. A Switching Roller Finger Follower (SRFF) is an economic solution for CDA that minimizes changes and preserves the overall width, height, or length of Dual Overhead Cam (DOHC) engines. The CDA SRFF provides the flexibility of either transferring or suppressing the camshaft movement to the valves influencing the engine performance and fuel economy by reducing the pumping losses. This paper addresses the performance and durability of the CDA SRFF system to meet the reliability for gasoline passenger car engines. Extensive tests were conducted to demonstrate the dynamic stability at high engine speeds and the system capacity of switching between high and low engine displacement within one camshaft revolution. The system durability was demonstrated with high and low engine speeds, various oil temperatures, mode switching, and abuse tests, meeting the end of life criteria in wear and function. System robustness to dimensional variation was tested to understand the effect on performance and durability. Lash increase, one important metric for wear evaluation, was monitored during durability and abuse tests. Multiple life tests were performed to demonstrate the system reliability of 99.94% over the engine's useful life. Test results show a robust design for performance, durability, and reliability for passenger car applications.
机译:气缸停用(CDA)是一种调节发动机位移以进行最大输出的有效方法,通过调节燃烧发动机中的有源汽缸的数量来改善燃料经济性。开关滚筒手指轴承(SRFF)是CDA的经济解决方案,可最大限度地减少变化,并保留双架空凸轮(DOHC)发动机的整体宽度,高度或长度。 CDA SRFF通过减少泵浦损耗来提供转移或抑制凸轮轴运动的柔韧性,从而通过减少泵浦损耗来影响发动机性能和燃料经济性的阀门。本文涉及CDA SRFF系统的性能和耐用性,以满足汽油乘用车发动机的可靠性。进行了广泛的测试,以展示高发动机速度下的动态稳定性以及在一个凸轮轴旋转内的高低发动机位移之间切换的系统能力。系统耐用性以高低发动机速度,各种油温,模式切换和滥用测试,会满足磨损和功能的终结标准结束。测试了对尺寸变化的系统鲁棒性,以了解对性能和耐用性的影响。在耐久性和滥用测试期间监测睫毛增加,耐磨评估的一个重要指标。进行多种寿命测试,以证明发动机的使用寿命的系统可靠性为99.94%。测试结果表明,用于乘用车应用的性能,耐用性和可靠性的强大设计。

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