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3D residual stresses around cold expanded holes in a new creep resistant aluminium alloy

机译:新型抗蠕变铝合金中冷扩孔周围的3D残余应力

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Hole cold expansion is used frequently to enhance the fatigue endurance of components. The cold expansion process introduces compressive residual stress at the periphery of the hole and tensile stress further away. To understand how these residual stresses enhance the fatigue life, it is essential that we have an accurate description of the three dimensional distribution of the stresses. In this paper we describe the results of experimental studies and finite element analyses used to determine detailed residual stress distributions in a new creep resistant alloy. The near surface residual stresses at the mandrel entrance and exit faces were measured using an X-ray diffraction technique. The results show significant differences between residual stresses at the two faces. The residual stresses are also shown to vary as a function of position around the hole. To take account of this variation a new approach, called the Garcia-Sachs method, was used to measure residual stress averaged through the thickness of the component. For finite element simulations, a combined hardening material model was used to reproduce the Bauschinger effect exhibited by the aluminium alloy. Using this new model, excellent agreement was found between predicted and measured near surface residual stresses. Finally there is also good agreement between the measured mid-thickness residual stress and the FE predictions.
机译:孔冷膨胀经常用于增强零件的疲劳强度。冷膨胀过程会在孔的外围引入压缩残余应力,而在远处引入拉伸应力。为了理解这些残余应力如何延长疲劳寿命,必须对应力的三维分布进行准确描述。在本文中,我们描述了用于确定新型抗蠕变合金中详细的残余应力分布的实验研究和有限元分析的结果。使用X射线衍射技术测量心轴入口和出口表面的近表面残余应力。结果表明,两个面的残余应力之间存在显着差异。还显示了残余应力随孔周围位置的变化而变化。考虑到这种变化,一种称为加西亚-萨克斯(Garcia-Sachs)方法的新方法被用来测量通过组件厚度平均的残余应力。对于有限元模拟,使用组合的硬化材料模型来再现铝合金表现出的包辛格效应。使用这个新模型,在预测和测量的近表面残余应力之间发现了极好的一致性。最后,在测得的中厚度残余应力与有限元预测之间也有很好的一致性。

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