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EFFECT OF FRICTION ON RESIDUAL STRESS DISTRIBUTION INDUCED BY SPLIT SLEEVE COLD EXPANSION PROCESS

机译:摩擦对分裂套管冷膨胀过程诱导残余应力分布的影响

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Residual Stress distribution and parametric influence of friction are studied for the split sleeve cold expanded holes in Al 2024 T35I alloy, by developing a three-dimensional finite element model of the process. Fastener holes in the alloy are necessary for the manufacturing process, but they create a potential area for stress concentration, which eventually leads to fatigue under cyclic loading. Beneficial compressive residual stress distribution as a result of the split sleeve cold expansion process provides retardation against crack initiation and propagation at the critical zones near hole edges. In this parametric study, the influence of friction between contact surfaces of the split sleeve and mandrel is numerically investigated. Hole reaming process after split sleeve cold expansion is often not discussed. Without this post-processing procedure, split sleeve cold expansion is incomplete in practice, and its purpose of providing better fatigue performance is invalidated. This study presents results and an overview of the significance of friction with the consideration of the postprocessing of split sleeve cold expansion. The numerical results show that with increasing friction coefficient, compressive residual stress reduces significantly at the mandrel entry side, which makes the hole edge more vulnerable to fatigue. The different aspects of finite element modeling approaches are also discussed to present the accuracy of the prediction. Experimental residual stress observation or visual validation is expensive and time-consuming. So better numerical prediction with the transparency of the analysis design can provide critical information on the process.
机译:通过开发该方法的三维有限元模型,研究了Al 2024 T35i合金中的分裂套管冷膨胀孔对摩擦的残余应力分布和参数影响。合金中的紧固件是制造过程所必需的,但它们为应力浓度产生潜在区域,这最终导致循环载荷下的疲劳。由于分裂套管冷膨胀过程的产生,受益压缩残余应力分布在孔边缘附近的临界区处的裂纹启动和传播提供延迟。在该参数研究中,在数值上研究了分裂套筒和心轴接触表面之间的摩擦的影响。孔铰孔过程经常讨论分裂套管冷膨胀后。如果没有这种后处理程序,则在实践中分裂套管冷膨胀是不完整的,其提供更好的疲劳性能的目的是无效的。本研究提出了摩擦的重要性,考虑了分裂套管冷膨胀的后处理。数值结果表明,随着摩擦系数的增加,压缩残余应力在心轴进入侧显着减少,这使得孔边缘更容易疲劳。还讨论了有限元建模方法的不同方面以呈现预测的准确性。实验残留应力观察或视觉验证昂贵且耗时。因此,利用分析设计的透明度更好的数值预测可以提供有关该过程的关键信息。

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