...
首页> 外文期刊>Journal of Computational and Nonlinear Dynamics >Nonlinear Dynamic Behavior of Turbocharger Rotor-Bearing Systems With Hydrodynamic Oil Film and Squeeze Film Damper in Series: Prediction and Experiment
【24h】

Nonlinear Dynamic Behavior of Turbocharger Rotor-Bearing Systems With Hydrodynamic Oil Film and Squeeze Film Damper in Series: Prediction and Experiment

机译:带有液压油膜和挤压油膜阻尼器的涡轮增压器转子轴承系统的非线性动力学行为:预测和实验

获取原文
获取原文并翻译 | 示例
           

摘要

Current trends for advanced automotive engines focusing on downsizing, better fuel efficiency, and lower emissions have led to several changes in turbocharger bearing system design and technology. Automotive turbochargers run faster and use engine oils with very low viscosity under high oil inlet temperature and low feed pressure. The development of high performing bearing systems, marrying innovation with reliability, is a persistent challenge. This paper shows progress on the nonlinear dynamic behavior modeling of the rotor-radial bearing system (RBS) incorporating two oil films in series: a hydrodynamic one with a squeeze film damper commonly used in turbochargers. The developed fluid bearing code predicts bearing rotational speed (in the case of fully floating design), operating inner and outer bearing film clearances, effective oil viscosity, taking into account its shear effect, and hydrostatic load. A rotordynamics code uses this input to predict the nonlinear lateral dynamic response of the rotor-bearing system. The model predictions are validated with test data acquired on a high speed turbocharger RBS of a 6.0 mm journal diameter running up to 250,000 rpm (maximum speed), 5W30 oil type, 150℃ oil inlet temperature, and 4 bar oil feed pressure. The tests are conducted at a rotordynamics technology laboratory using a high performance data acquisition system. Turbochargers with four combinations of inner and outer RBS clearances are tested. Prediction and measured synchronous response and total motion are in good agreement. Both demonstrate the nonlinear character of the RBS behavior, including several sub synchronous frequency components across the operating speed range. The nonlinear predictive model aids the development of high performance and optimized turbocharger RBS with faster development cycle times and increased reliability.
机译:专注于小型化,提高燃油效率和降低排放的先进汽车发动机的当前趋势已导致涡轮增压器轴承系统设计和技术发生了几处变化。汽车涡轮增压器在较高的进油温度和较低的进油压力下运行速度更快,并使用粘度非常低的发动机油。将高性能与创新相结合的高性能轴承系统的开发是一项持续的挑战。本文显示了转子-径向轴承系统(RBS)的非线性动力学行为建模的进展,该系统包含两个串联的油膜:涡轮增压器中常用的带有挤压膜阻尼器的流体动力系统。制定的流体轴承规范可预测轴承转速(在完全浮动设计的情况下),内部和外部轴承膜间隙,有效油粘度(考虑其剪切效应)和静液压载荷。转子动力学代码使用此输入来预测转子轴承系统的非线性横向动态响应。模型预测通过在6.0 mm轴颈直径,最高转速250,000 rpm(最大速度),5W30油类型,150℃进油温度和4 bar进油压力的高速涡轮增压器RBS上获得的测试数据进行验证。这些测试是在转子动力学技术实验室使用高性能数据采集系统进行的。测试了具有内部和外部RBS间隙的四种组合的涡轮增压器。预测和测得的同步响应与总运动非常吻合。两者都证明了RBS行为的非线性特征,包括整个工作速度范围内的几个次同步频率分量。非线性预测模型有助于开发高性能和优化的涡轮增压器RBS,具有更快的开发周期和更高的可靠性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号