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FULL SCALE REELING SIMULATION TEST OF X65 HFW LINEPIPE

机译:X65 HFW管线的全尺寸模拟试验

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Reel-lay method is widely recognized cost effective installation process for offshore pipelines. In the process of reel-lay, cyclic plastic strain is expected at pipelines due to reeling, unreeling, aligning and straightening. In order to maintain integrity of pipelines subjected to large bending deformation it is necessary to understand the bending deformability and change in mechanical properties of pipelines. Advanced HFW (High Frequency electric resistance Welded) linepipe "MightySeam~®" has superior low temperature toughness at seam weld and base material and has some advantages in application to offshore pipelines from a viewpoint of change in toughness due to pre-straining, coatings and long time exposure. In this paper full scale reeling simulation tests of X65 HFW linepipe were conducted in order to study bending deformability and the change in mechanical properties. The tests were performed by bending pipe alternately to reeling former and straitening former with different radii. Girth welding were applied to test pipes in order to investigate effect of strain concentration around girth weld by strength mismatch or weld reinforcement. Small scale reeling simulation tests with/without aging were also conducted and the results were compared to those of full scale reeling simulation tests. In full scale reeling simulation test, some strain concentration arose around girth weld by strength mismatch and local contact of weld reinforcement to former. Some ovalizations were advanced during tests, however local buckling could not be recognized throughout pipes even if strain concentration occur around girth welds. Tensile properties were changed proportional to last introduced plastic strain as a result of Bauschinger effect and work hardening at strain history. Low temperature toughness of base material and seam weld did not change significantly by pre-straining or aging.
机译:盘绕法是公认的海上管道成本有效的安装过程。在盘绕过程中,由于盘绕,开卷,对齐和矫直,预计在管道中会出现周期性塑性应变。为了保持经受大的弯曲变形的管道的完整性,有必要了解弯曲变形性和管道的机械性能的变化。先进的HFW(高频电阻焊接)管线管“ MightySeam〜®”在接缝焊缝和基础材料上具有出色的低温韧性,并且由于预应变,涂层和涂层引起的韧性变化,在应用于海上管线方面具有一些优势。长时间曝光。为了研究弯曲变形能力和力学性能的变化,本文对X65 HFW管线进行了全面的卷取模拟测试。试验是通过交替弯曲管子来进行的,即对具有不同半径的former模和定型模进行交替弯曲。为了研究由于强度不匹配或焊缝增强而引起的环缝焊缝附近的应变集中的影响,将环缝焊缝应用于试管。还进行了带/不带老化的小尺寸卷盘模拟测试,并将结果与​​全尺寸卷盘模拟测试的结果进行了比较。在全尺寸绕线模拟试验中,由于强度不匹配以及焊缝钢筋与成形件的局部接触,在环缝焊缝周围产生了一些应变集中。在测试过程中出现了一些椭圆化,但是即使在环缝处出现应变集中,也无法在整个管道中识别出局部屈曲。由于鲍辛格效应,拉伸性能与最后引入的塑性应变成比例地变化,并且在应变历史上发生了工作硬化。基材和缝焊的低温韧性不会因预应变或时效而发生明显变化。

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