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A VALIDATED MODEL OF THE CYCLIC STRESS STATE OF AN A356 AUTOMOTIVE WHEEL AND ITS IMPACT ON FATIGUE LIFE

机译:A356汽车轮循环应力状态的验证模型及其对疲劳寿命的影响

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Fatigue life is a key consideration in the design of cast aluminum alloy automotive wheels which offer both improved strength-to-weight ratio and fuel efficiency. The cyclic in-service (applied load and residual) stress distribution within a wheel is a limiting factor determining a wheel's fatigue performance. In this investigation, a through process modeling methodology was applied to predict the cyclic stress state of an A356 automotive wheel subject to a bending moment. The predicted residual stresses arising during heat treatment and released through machining were validated by a destructive strain measurement technique. With the residual stress state used as an initial condition, the variation of the in-service stress state during a bending test was predicted. The measured strain variations within the wheel for a series of different bending loads were found to agree well with the predictions. These results were incorporated into a through process modeling approach to assess the fatigue performance of the wheel.
机译:疲劳寿命是铸铝合金汽车车轮设计的关键考虑,可提高强度 - 重量比和燃油效率。车轮内的循环在职(应用负载和残余)应力分布是确定车轮疲劳性能的限制因素。在该研究中,应用了通过过程建模方法来预测A356汽车轮的循环应力状态,其受到弯矩。通过破坏性应变测量技术验证在热处理和通过加工过程中产生的预测残余应力。利用用作初始条件的残余应力状态,预测了在弯曲试验期间的适用于役应力状态的变化。针对一系列不同弯曲载荷的轮内测量的应变变化与预测很好。将这些结果掺入A通过过程建模方法中以评估车轮的疲劳性能。

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