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首页> 外文期刊>Materials & design >Experimental and numerical investigations about the combined effect of interference fit and bolt clamping on the fatigue behavior of Al 2024-T3 double shear lap joints
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Experimental and numerical investigations about the combined effect of interference fit and bolt clamping on the fatigue behavior of Al 2024-T3 double shear lap joints

机译:过盈配合和螺栓夹紧对Al 2024-T3双剪切搭接接头疲劳性能的综合影响的实验和数值研究

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摘要

In this paper the fatigue behavior of double shear lap joints treated by different combinations of interfer ence fit and bolt clamping have been investigated both experimentally and numerically. To do so, spec imens made from aerospace structural material of aluminum alloy 2024-T3 plates were interference fitted at the sizes of 1.5% and 4.7% and torque tightened with 2 and 4 N m to be prepared for fatigue tests. Consequently, the joints were subjected to cyclic load at different levels to obtain fatigue life. Finite ele ment (FE) analysis was also performed to find the stress and strain distributions and the results were used to help explain the trends observed in the experimentally obtained S-N data. The experimental tests showed that during the interference fit process a protruded region is created at around the hole in the exit plane due to directional material plastic flow as a consequence of the oversized bolt force fitting. This protruded region has a bigger height for the bigger interference fit size. The finite element results showed that the protruded region generally localizes the compressive effect of bolt clamping and reduces its capability in fatigue life enhancement, by relaxing the clamping force. The fatigue test results showed that a better fatigue life improvement was achieved by employing the combination of a smaller interfer ence fit size and bigger clamping force.
机译:本文通过干涉配合和螺栓夹紧的不同组合对双剪切搭接接头的疲劳行为进行了实验和数值研究。为此,将由2024-T3铝合金板的航空结构材料制成的规格过盈配合,尺寸分别为1.5%和4.7%,并用2和4 Nm的扭矩拧紧扭矩,以准备进行疲劳测试。因此,关节承受了不同水平的循环载荷以获得疲劳寿命。还进行了有限元(FE)分析以找到应力和应变分布,并使用该结果来帮助解释在实验获得的S-N数据中观察到的趋势。实验测试表明,在过盈配合过程中,由于螺栓力配合过大,定向材料塑性流动会在出口平面的孔周围形成突出区域。该突出区域具有较大的高度,以提供较大的过盈配合尺寸。有限元结果表明,凸出的区域通常会放宽螺栓夹紧的压缩作用,并通过释放夹紧力而降低其提高疲劳寿命的能力。疲劳试验结果表明,通过将较小的干涉配合尺寸和较大的夹紧力结合使用,可以更好地改善疲劳寿命。

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  • 来源
    《Materials & design》 |2012年第1期|p.425-435|共11页
  • 作者

    T.N. Chakherlou; B. Abazadeh;

  • 作者单位

    The Faculty of Mechanical Engineering, University of Tabriz, P.O. Box 51666-74766, Tabriz, Iran;

    The Faculty of Mechanical Engineering, University of Tabriz, P.O. Box 51666-74766, Tabriz, Iran;

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