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APPLICATION OF LOAD SEQUENCE TO CONTROL CRACK GROWTH IN STEEL PIPELINES UNDER NEAR NEUTRAL pH SCC

机译:加载序列在近中性pH SCC下控制钢管道裂纹扩展的应用

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Pipelines are designed to operate below a maximum operating pressure in service. However, there are pressure fluctuations during operation. The presence of pressure fluctuations creates a drive for crack growth in steel pipes. In order to prevent catastrophic failure of pipelines, there is need for better understanding of the contribution of pressure fluctuations to crack growth rate in steel pipelines. Analysis of pressure fluctuation data in oil and gas pipelines shows that there are different types of fluctuations in a pipe due to friction loss with distance from the pump or compressor station. All these fluctuation types show a form of variable amplitude loading classified in this research as underload, mean load and overload. Studies of some structural systems shows that underload can cause acceleration of crack growth while retardation of crack growth is observed after an overload. This research aims to apply pressure fluctuations to manage integrity of steel pipelines through a novel approach of load sequence involving underload and overload in near neutral pH environment. Clear knowledge of the effect of load interaction involving load sequence of underload and overload is vital to control crack growth in steel pipelines under near neutral pH environment. The result of crack growth rate under different load sequence on X65 steel indicate that increase in overload ratio of 2, 3 and 4 caused an increase in crack growth rate of 1.68E-3, 1.89E-3 and 2.31E-3 mm/block respectively. These results are compared with results from other tests under variable amplitude without load sequence. Analyses were carried out on the morphology of the crack tip and the fracture surface after the test.
机译:管道设计为在使用中的最大工作压力以下运行。但是,操作过程中会有压力波动。压力波动的存在推动了钢管裂纹的发展。为了防止管道发生灾难性故障,需要更好地了解压力波动对钢管管道裂纹扩展速率的影响。对石油和天然气管道中压力波动数据的分析表明,由于摩擦损失以及与泵站或压缩机站之间的距离,管道中会出现不同类型的波动。所有这些波动类型都显示了一种变幅载荷形式,在本研究中分为欠载,平均载荷和超载。对某些结构系统的研究表明,欠载会导致裂纹扩展加速,而在过载后会观察到裂纹扩展的延迟。这项研究的目的是通过一种在近中性pH值环境中涉及欠载和过载的新的载荷顺序方法,来应用压力波动来管理钢管的完整性。清楚了解载荷相互作用(包括欠载荷和过载的载荷顺序)的影响对于控制在接近中性pH的环境下钢管的裂纹扩展至关重要。 X65钢在不同载荷序列下的裂纹扩展速率结果表明,过载比2、3和4的增加导致裂纹扩展速率分别增加1.68E-3、1.89E-3和2.31E-3 mm / block分别。将这些结果与没有负载序列的可变振幅下其他测试的结果进行比较。试验后对裂纹尖端和断裂表面的形态进行了分析。

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