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Improving Low-Frequency Torsional Vibrations NVH Performance Through Analysis and Test

机译:通过分析和测试改善低频扭转振动NVH性能

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Low-frequency torsional vibrations can be a significant source of objectionable vehicle vibrations and in-vehicle boom, especially with changes in engine operation required for improved fuel economy. These changes include lower torque converter lock-up speeds and cylinder deactivation. This paper has two objectives: 1) Examine the effect of increased torsional vibrations on vehicle NVH performance and ways to improve this performance early in the program using test and simulation techniques. The important design parameters affecting vehicle NVH performance will be identified, and the trade-offs required to produce an optimized design will be examined. Also, the relationship between torsional vibrations and mount excursions will be examined. 2) Investigate the ability of simulation techniques to predict and improve torsional vibration NVH performance. Evaluate the accuracy of the analytical models by comparison to test results. A simple model is presented which gives fairly accurate results and can be included in a full-vehicle finite element model to calculate vehicle-level NVH responses. A procedure to calculate the loads to be applied to the model is also presented.
机译:低频扭转振动可以是令人反感的车辆振动和车载繁荣的重要来源,特别是随着改善燃料经济性所需的发动机操作的变化。这些变化包括较低的转矩转换器锁定速度和汽缸停用。本文有两个目标:1)使用测试和仿真技术,检查扭转振动增加对车辆NVH性能的影响以及提高这些性能的方法。影响车辆NVH性能的重要设计参数将被识别,并检查产生优化设计所需的权衡。此外,将检查扭转振动和乘坐偏移之间的关系。 2)研究模拟技术预测和改善扭转振动性能的能力。通过比较与测试结果进行评估分析模型的准确性。提出了一种简单的模型,其给出了相当准确的结果,并且可以包括在全车辆有限元模型中以计算车辆级NVH响应。还提出了计算要应用于模型的负载的过程。

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