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Attenuation of Driveline Vibrations through Tuning of Propeller Shaft Liners

机译:通过调整螺旋桨轴线的衰减振动

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The installation of various liners into the propeller shaft tube is a traditional driveline NVH treatment to attenuate driveline vibration. The most commonly used liners include rolled paper, C-cut cardboard, corrugated cardboard, etc. These traditional liner treatments are expected to provide damping to the driveline system to reduce the vibration levels. However their added level of damping and effectiveness to the driveline system are limited, particularly when dealing with driveline gear mesh vibration and noise. This paper presents a novel type of liner treatment - tunable liners. The liner is designed such that it functions as a tuned dynamic vibration absorber. Through proper design of the liner, it can be tuned for bending and torsion modes at the same time. The liner design parameters and their impact on the frequency tuning are analyzed and studied through both physical testing and FEA analysis. Optimization of liner length and its placement location inside the tube is also discussed. Physical validation tests at both driveline subsystem and vehicle levels are presented that demonstrate superior performance of the liner including significant reduction of driveline gear mesh vibration and noise without the mass increase of traditional liners. Suitable applications and inherent limitations of these tunable liners are also discussed.
机译:将各种衬垫的安装进入螺旋桨轴管是传统的传动系NVH处理,以减弱传动系统的振动。最常用的衬垫包括卷纸,C切割硬纸板,瓦楞纸板等,这些传统的衬垫治疗预期提供阻尼到传动系系统,以减少振动水平。然而,它们增加了对传动系统系统的阻尼水平和有效性是有限的,特别是在处理传动系管齿轮振动和噪声时。本文介绍了一种新型衬里衬垫处理可调衬垫。衬里设计成使得其用作调谐动态振动吸收器。通过适当的衬里设计,可以同时调谐弯曲和扭转模式。通过物理测试和FEA分析分析衬垫设计参数及其对频率调谐的影响。还讨论了管内的衬垫长度及其放置位置的优化。提出了驱动器子系统和车辆水平的物理验证测试,其展示了衬里的优异性能,包括显着降低传动系齿轮振动和噪音而没有传统衬里的质量增加。还讨论了这些可调谐衬里的适当应用和固有局限性。

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