...
首页> 外文期刊>Journal of Mechanical Science and Technology >Finite element modeling and fatigue analysis of hypoid gears installed in a power transfer unit with a correlational study based on an experimental investigation
【24h】

Finite element modeling and fatigue analysis of hypoid gears installed in a power transfer unit with a correlational study based on an experimental investigation

机译:基于实验研究的相关性研究,在电力传输单元中安装了双瓦齿轮的有限元建模与疲劳分析

获取原文
获取原文并翻译 | 示例
           

摘要

The effective analysis modeling of a power transfer unit (PTU) with the finite element method was conducted to investigate gear-root bending fatigue. This PTU was designed for an AWD/4WD vehicle system. The hypoid gear plays an important role in PTU systems. The finite element (FE) model is useful to consider various stiffness components and is regarded as the most suitable and effective tool as computer performance increases. Without a proper introduction of system stiffness, we cannot exactly predict fatigue failure life in FE analysis. In this study, a simulation model was developed with the focus of affecting gear-mesh misalignment, such as gear-body flexibility, shafts, bearing stiffness and gearbox stiffness. To validate the results, we did a correlation study of fatigue failure life between physical test results and fatigue life analysis results. Prior to this fatigue analysis, the system torsional stiffness was correlated between physical tests and virtual analysis. Next, loaded tooth contact analysis (LTCA) was conducted to compare the experimental and simulated results. The proposed integrated FE model for predicting the fatigue life of hypoid gear roots based on the full system agrees well with the results of the physical durability test. Moreover, the developed FE model is becoming competitive in terms of computational costs.
机译:进行了具有有限元法的动力传递单元(PTU)的有效分析建模,以研究齿轮根弯曲疲劳。该PTU专为AWD / 4WD车辆系统而设计。斜面齿轮在PTU系统中起着重要作用。有限元(FE)模型可用于考虑各种刚度分量,并且被视为计算机性能增加的最合适且有效的工具。如果没有正确引入系统僵硬,我们不能完全预测Fe分析中的疲劳失效寿命。在该研究中,仿真模型是用影响齿轮网未对准的焦点开发,例如齿轮体柔性,轴,轴承刚度和齿轮箱刚度。为了验证结果,我们对物理测试结果与疲劳寿命分析结果之间的疲劳失效寿命进行了相关性研究。在此疲劳分析之前,系统扭转刚度在物理测试和虚拟分析之间相关。接下来,进行负载牙齿接触分析(LTCA)以比较实验和模拟结果。所提出的综合FE模型,用于预测基于完整系统的双阀齿轮根疲劳寿命与物理耐久性测试的结果吻合良好。此外,开发的FE模型在计算成本方面正在变得竞争。

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