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Design characteristics that improve the fatigue life of threaded pipe connections

机译:提高螺纹管连接疲劳寿命的设计特性

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摘要

Threaded pipe connections are commonly used to connect risers, tendons, drill pipes and well casing strings. In these applications fatigue resistance plays an important role. A large variety of patented design features exist, all claiming to improve the connection’s fatigue life. However, patent documents only contain claims and numerical or experimental data about these connection’s performance is generally not published. This makes it hard to make a quantitative comparison between different designs. In this study an overview is given of fatigue resistant threaded connections. Two major methods to improve the fatigue life of a connection were identified. First of all, local stress concentrations can be reduced by optimizing the geometry of the threads. Second the global shape of the connection can be optimized to obtain a more uniform load distribution. Using a parametric finite element model, different designs were compared. The connections were modelled by a 2D axisymmetric geometry with non-linear material properties and elaborate contact conditions. Selected designs have been subjected to experimental tests in a four-point bending fatigue setup. The experimental tests serve as a validation for the results of the numerical simulations. It was found that the multiaxial stress distribution at the thread roots is the defining factor for the fatigue life of the connection. Nevertheless, these stresses can be changed by the global geometry of the connection. It can be concluded that the fatigue life of threaded connections is determined by a combination of global and local aspects which should both be analysed for fatigue life calculations.
机译:螺纹管连接通常用于连接立管,钢筋束,钻杆和井套管。在这些应用中,抗疲劳性起着重要的作用。存在多种获得专利的设计功能,所有这些功能都声称可以改善连接的疲劳寿命。但是,专利文件仅包含权利要求,有关这些连接性能的数字或实验数据通常不会公开。这使得很难对不同设计之间进行定量比较。在这项研究中,给出了抗疲劳螺纹连接的概述。确定了两种改善连接疲劳寿命的主要方法。首先,可以通过优化螺纹的几何形状来降低局部应力集中。其次,可以优化连接的整体形状以获得更均匀的负载分布。使用参数化有限元模型,比较了不同的设计。通过具有非线性材料特性和复杂接触条件的二维轴对称几何模型对连接进行建模。所选设计已通过四点弯曲疲劳设置进行了实验测试。实验测试证明了数值模拟的结果。发现在螺纹根部的多轴应力分布是连接疲劳寿命的决定性因素。但是,这些应力可以通过连接的整体几何形状来更改。可以得出结论,螺纹连接的疲劳寿命是由整体和局部因素共同决定的,应综合分析疲劳寿命的计算方法。

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