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Stress concentration incorporated fatigue analysis of die-marked drill pipes

机译:标记钻杆应力集中的疲劳分析

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摘要

Fatigue damage of drill pipes occurs in the pipe section at the dogleg region (where the drill pipe changes its drilling direction) due to alternating bending stress during rotation of the pipe. The pipe section may fail due to the cumulate effect of fatigue damage in a single drilling event, or in a number of drilling events. Moreover, dies of gripping systems mark the pipe surface during making and breaking operations (screwed and unscrewed to connect and disconnect two pipes). These marks on the pipe surface cause stress concentration. This paper develops a method for fatigue analysis of drill pipes taking into account the alternating bending stress at the dogleg, the direct axial stress due to handing weight of drill pipes and the stress concentration during to diemarks on the pipe surface. The application of the method is demonstrated by evaluating cumulative fatigue damage for a number of drilling events and different gripping systems which produce die-marks of different depths. Results have revealed that higher die-mark depths accelerate fatigue failure, which can be predicted more accurately by the method presented in this paper.
机译:由于在管的旋转过程中交变的弯曲应力,在卡箍区域(钻管改变其钻孔方向)的管段中发生了钻管的疲劳损坏。在单个钻井事件或多个钻井事件中,由于疲劳损坏的累积影响,管段可能会失效。此外,夹持系统的模具在制造和断裂操作过程中会标记管道表面(拧紧和拧松以连接和断开两个管道)。管道表面上的这些标记会引起应力集中。本文研究了一种钻杆疲劳分析方法,该方法考虑了在弯头处的交变弯曲应力,由于钻杆的搬运重量而产生的直接轴向应力以及在钻杆表面压痕期间的应力集中。通过评估许多钻孔事件和产生不同深度模具标记的不同夹持系统的累积疲劳损伤,证明了该方法的应用。结果表明,较高的模刻痕深度会加速疲劳破坏,通过本文介绍的方法可以更准确地预测。

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