首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >NUMERICAL EVALUATION OF MECHANICAL PROPERTY CHANGE AND COLLAPSE STRENTH OF ERW PIPES CONSIDERING MANUFACTURING PROCESS
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NUMERICAL EVALUATION OF MECHANICAL PROPERTY CHANGE AND COLLAPSE STRENTH OF ERW PIPES CONSIDERING MANUFACTURING PROCESS

机译:考虑制造过程的ERW管力学性能变化和塌陷强度的数值评估

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Along with the development of the energy industry, demand for oil and gas pipelines has increased, and as the low oil price era has been prolonged, more economical pipe design and construction are required. Typical examples are ERW pipes used as OCTG or reel-lay pipeline. The ERW pipe is made by passing the plate through continuous rollers, where repetitive loading and unloading causes unintentional plastic deformation and changes in initial steel properties. So, this study focused on both the change of mechanical properties during manufacturing process and collapse strength of ERW pipe considering the Bauschinger effect in order to produce more economical and high performance steel pipe. In this paper, the ERW manufacturing process was divided into three stages: forming station, sizing station, and flattening station. The ERW manufacturing process was simulated as 3D nonlinear finite element models using ABAQUS (6.14-1). Then, the change of mechanical properties at each process station was examined through finite element analysis and PEEQ, Alpha, and residual stress in each process station were evaluated for maintaining continuity of analysis. And flattening station where the reverse bending gives a large change in the mechanical properties was also performed. Finally, the collapse strength of the ERW pipe was evaluated in consideration of the change in compression strength during the manufacturing process. The ABAQUS analytical model was verified by showing analytical results to be identical with the outer diameter measured from the full-scale size pipes. Using the developed analytical model, it is possible to numerically predict the mechanical properties and collapse strength of ERW pipe.
机译:随着能源工业的发展,对石油和天然气管道的需求增加,并且随着低油价时代的延长,需要更加经济的管道设计和建造。典型的示例是用作OCTG或卷盘铺设管道的ERW管道。 ERW管是通过使钢板穿过连续的辊子而制成的,在该辊子中反复进行装卸会导致意外的塑性变形和初始钢性能的变化。因此,本研究集中在考虑鲍辛格效应的同时,考虑了制造过程中机械性能的变化和ERW管的抗折强度,以生产出更经济,性能更高的钢管。在本文中,ERW的制造过程分为三个阶段:成型站,施胶站和压平站。使用ABAQUS(6.14-1)将ERW制造过程模拟为3D非线性有限元模型。然后,通过有限元分析检查每个加工站的机械性能变化,并评估PEEQ,Alpha,并评估每个加工站的残余应力以保持分析的连续性。并进行了反向弯曲使机械性能发生较大变化的压扁站。最后,考虑到制造过程中抗压强度的变化,对ERW管的塌陷强度进行了评估。 ABAQUS分析模型通过显示分析结果与从全尺寸管道测得的外径相同而得到验证。使用开发的分析模型,可以用数字方式预测ERW管的机械性能和坍塌强度。

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