首页> 外文会议>International Conference on Offshore Mechanics and Arctic Engineering, Jun 23-28, 2002, Oslo, Norway >COST EFFECTIVE FABRICATION OF LARGE DIAMETER HIGH STRENGTH TITANIUM CATENARY RISER
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COST EFFECTIVE FABRICATION OF LARGE DIAMETER HIGH STRENGTH TITANIUM CATENARY RISER

机译:大直径高强度钛合金水口冒口的成本有效制造

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A large diameter high strength titanium free-hanging catenary riser was evaluated by the Demo 2000 Ti-Rise project, from initiative of the Kristin Field development license. In order to reduce the uncertainties related to the schedule, cost, and special technical issues identified in the work related to a similar riser for future installation on the Asgard B semi-submersible platform, a fabrication qualification of a full scale riser in titanium was run. Several full-scale production girth welds were made in an in-situ fabrication environment. The welding was performed on extruded titanium grade 23 (ASTM) pipes with an ID of 25.5″ and wall thickness of 30 mm. The main challenge was to develop a highly productive TIG orbital welding procedure, which produced welds with as low pore content as possible. It is well known that sub-surface pores often are initiation sits for fatigue cracks in high strength titanium welds. This paper describes how a greatly improved productivity was obtained in combination with a high weld quality. NDT procedures were developed whit the main on the reliability to detect and locate possible sub-surface weld defects, volumetric defects such as pores and tungsten particles and planar defects such as lack of fusion. The results from the actual Non Destructive Testing (NDT), the mechanical testing, and the fatigue testing of the subjected welds are presented. The response of the catenary is optimised by varied distribution of weight coating along the riser's length. A satisfactory weight coating with sufficient strength, bond strength, and wear properties was developed and qualified. The riser is planned to be fabricated from extruded titanium pipes, welded together onshore to one continuous piece. The field coating is added and the riser is loaded into the sea and towed offshore and installed.
机译:大直径高强度钛制自由悬挂式悬链提升管由克里斯汀·菲尔德(Kristin Field)开发许可证倡议的Demo 2000 Ti-Rise项目进行了评估。为了减少与时间表,成本以及与类似立管有关的工作中确定的特殊技术问题的不确定性,以便将来将其安装在Asgard B半潜式平台上,对钛制全立管进行了制造鉴定。在原位制造环境中进行了数次全面的生产环焊缝。焊接在ID为25.5英寸,壁厚为30 mm的挤压钛23级(ASTM)管道上进行。主要挑战是开发一种高生产率的TIG轨道焊接程序,该程序所产生的焊缝的孔隙率应尽可能低。众所周知,表面下的孔通常是高强度钛焊缝疲劳裂纹的起爆点。本文描述了结合高焊接质量如何获得大大提高的生产率。开发了无损检测程序,其主要目的是检测和定位可能的次表面焊缝缺陷,诸如孔和钨颗粒的体积缺陷以及诸如缺乏熔合的平面缺陷的可靠性。给出了来自实际无损检测(NDT),机械测试和焊缝疲劳测试的结果。悬链线的响应通过沿立管长度变化的配重涂层分布进行了优化。具有足够强度,粘结强度和耐磨性能的令人满意的重质涂料已开发并合格。立管计划由挤压的钛管制成,并在岸上焊接成一个连续的零件。添加现场涂料,将立管装到海中,然后拖离海上并安装。

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