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API J55 Steel Casing Pipe with an Initial Surface Crack under Internal Pressure - Determination of Fracture Parameters

机译:API J55钢套管,内部压力下的初始表面裂纹 - 骨折参数的测定

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Seam casing pipe used in an oil drilling rig, manufactured by high frequency (HF) contact welding of API J55 steel, is tested. The influence of an initial defect (machined surface crack) is analysed, by performing pressure test of a pipe segment closed at both ends. Besides the damages at the internal surface, casing pipes are exposed to damage at the external surface, which is why such configuration is analysed here. Measurement of strains and crack mouth opening displacement (CMOD) enabled the application of direct method for J integral evaluation. This procedure is based on the path independence of the J integral and can be applied both in laboratory conditions (on specimens) and on structures. However, it requires a demanding experimental - computational procedure, which is accomplished here using the developed routine. Additionally, the behaviour of the pipe under internal pressure, including fracture mechanics parameters determination, is modelled numerically (by finite element method) in software package Abaqus. The pressure is applied as distributed load acting on the inner surface of the three-dimensional model, and axial tension is applied at the end of the pipe to simulate the closed end. J integral values determined numerically and using direct method are used for estimation of the critical pressure corresponding to the crack growth initiation. Additionally, plastic limit load, i.e. pressure which causes yielding of the ligament, is determined. Based on the results, criteria for pipe integrity assessment are discussed.
机译:通过高频(HF)接触式API J55钢制造的煤层壳管,由API J55钢的高频(HF)接触焊接制造。通过在两端闭合的管段的压力测试进行分析初始缺陷(机加工表面裂纹)的影响。除了内表面的损坏之外,套管管道暴露于外表面的损坏,这就是此处分析这种配置的原因。菌株和裂缝口开口位移的测量(CMOD)使直接方法应用于j积分评估。该过程基于J积分的路径独立性,并且可以在实验室条件(在标本上)和结构上应用。然而,它需要一种苛刻的实验 - 计算过程,其在这里使用发达的例程完成。另外,管道在内部压力下的行为,包括骨折力学参数测定,在数字上(通过有限元方法)在软件包ABAQUS中进行模拟。将压力施加为作用在三维模型的内表面上的分布式负载,并且在管道的末端施加轴向张力以模拟封闭端。在数字和使用直接方法确定的J积分值用于估计与裂纹生长起始相对应的临界压力。另外,确定塑料极限载荷,即导致韧带的屈服的压力。根据结果​​,讨论了管道完整性评估标准。

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