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Fatigue life prediction of a heavy vehicle steel wheel under radial loads by using finite element analysis

机译:重型汽车钢轮在径向载荷下的疲劳寿命预测的有限元分析

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摘要

The origin of fatigue failure that occurs on the air ventilation holes of a newly designed heavy commercial vehicle steel wheel in dynamic radial fatigue tests is studied. In these tests, all of the test samples failed in the same regions. The cause of this damage was studied via finite element analysis. In order to determine the reason of the fatigue failure, stress analysis was performed via the finite element method. In this way, stress concentrated regions, where fatigue failure is expected, were determined. Mechanical properties of the wheel material were determined by tensile tests and hardness measurements. The fatigue life of the damaged wheel was estimated using the stress-life (S-N) approach, utilising the ultimate tensile strength of the processed wheel material and the Marin factors determined for the critical regions. To extend the life of the wheel disc and delay the onset of fatigue, design enhancement solutions were applied.
机译:研究了在动态径向疲劳试验中,新设计的重型商用车钢轮的通风孔上发生的疲劳破坏的根源。在这些测试中,所有测试样本均在相同区域中失败。通过有限元分析研究了这种损坏的原因。为了确定疲劳破坏的原因,通过有限元方法进行了应力分析。以此方式,确定了预期疲劳破坏的应力集中区域。车轮材料的机械性能通过拉伸试验和硬度测量确定。使用应力寿命(S-N)方法评估受损车轮的疲劳寿命,该方法利用加工过的车轮材料的极限抗拉强度和为关键区域确定的马林系数。为了延长轮盘的使用寿命并延缓疲劳的发作,应用了增强设计的解决方案。

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