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Simplified Method to Predict Fatigue Crack Growth Life by Combining Finite Element Method and Willenborg's Model

机译:通过组合有限元法和威恩堡模型来预测疲劳裂纹增长寿命的简化方法

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Among various cold expansion methods, Split Sleeve Cold Expansion technique is widely used. This method induces a zone of compressive residual stresses by pulling an oversized mandrel followed by removal through the hole. An appropriate amount of compressive residual stress reduces the severity of tensile stresses acting on the components there by retarding the fatigue crack growth rate or extending the service life of the components. It has been observed that either extensive testing or special computer codes (AFGROW) are required to determine fatigue crack growth life around residual stress fields. There was no generalized procedure to predict fatigue crack growth life around residual stress fields of cold expanded holes. An attempt has been made in this work to develop a systematic, simplified method to predict fatigue crack growth life around cold expanded holes by combining finite element method and Willenborg's model. This method was in very good agreement to the classical approach and the variation of predication of fatigue crack growth was about 5.77% compared to the classical approach. The outcome of this work is the development of a systematic and simple procedure for predicting fatigue crack growth life around cold expanded fastener holes. This procedure helps in recommending appropriate inspection intervals and extending the service life of fatigue prone fastener holes.
机译:在各种冷膨胀方法中,分裂套管冷膨胀技术被广泛使用。该方法通过拉动过大的心轴,然后通过孔移除来引导压缩残余应力区域。通过延迟疲劳裂纹生长速率或延长组分的使用寿命,适量的压缩残余应力降低了作用在组分上的拉伸应力的严重程度。已经观察到,需要广泛的测试或特殊计算机代码(Afgrow)来确定残余应力场周围的疲劳裂纹生长寿命。没有一般性的方法来预测冷膨胀孔的残余应力场周围的疲劳裂纹生长寿命。通过组合有限元方法和威尔诺堡的模型,在这项工作中,在这项工作中制定了一种系统,简化的方法,以预测冷膨胀孔周围的疲劳裂纹生长寿命。该方法对经典方法非常好,疲劳裂纹裂纹增长的预测的变化与经典方法相比约为5.77%。这项工作的结果是开发系统和简单的程序,用于预测冷膨胀的紧固件孔周围的疲劳裂纹生长寿命。此过程有助于建议适当的检查间隔并延长疲劳易于紧固孔的使用寿命。

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