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首页> 外文期刊>International Journal of Mechanical Sciences >Numerical simulations of the fatigue damage evolution at a fastener hole treated by cold expansion or with interference fit pin
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Numerical simulations of the fatigue damage evolution at a fastener hole treated by cold expansion or with interference fit pin

机译:用冷胀或过盈配合销钉处理紧固件孔处疲劳损伤演变的数值模拟

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Numerical simulations of the fatigue damage evolution at a hole in a plate treated by cold expansion or with interference fit pin is performed based on continuum damage mechanics and the finite element method. The damage-coupled Chaboche plasticity constitutive model is used to model the mechanical behavior of material. Plastic-strain-based and stress-based equations are used to calculate damage accumulation. The process of the hole cold expansion or pin interference fit and the subsequent fatigue damage evolution are simulated. The predicted results agree well with the experimental data available in the literature. Result shows that the beneficial effect of cold expansion and interference fit on the fatigue life improvement of a fastener hole is not only due to the reduction in maximum stress or stress amplitude, but also to the change in the fatigue damage evolution at the critical location. (C) 2016 Elsevier Ltd. All rights reserved.
机译:基于连续损伤力学和有限元方法,对冷扩孔或过盈配合销钉处理后的孔中疲劳损伤演化进行了数值模拟。损伤耦合的Chaboche塑性本构模型用于建模材料的力学行为。基于塑性应变和应力的方程式用于计算损伤累积。模拟了孔的冷膨胀或过盈配合的过程以及随后的疲劳损伤演变。预测结果与文献中提供的实验数据非常吻合。结果表明,冷胀和过盈配合对提高紧固件孔的疲劳寿命的有益作用,不仅是由于最大应力或应力幅值的减小,而且是由于关键部位疲劳损伤演变的变化所致。 (C)2016 Elsevier Ltd.保留所有权利。

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