首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2011 >ULTRA HEAVY WALL LINEPIPE X65: DOUBLE JOINT GIRTH WELD PERFORMANCES FOR SEVERE APPLICATIONS
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ULTRA HEAVY WALL LINEPIPE X65: DOUBLE JOINT GIRTH WELD PERFORMANCES FOR SEVERE APPLICATIONS

机译:超重型墙线X65:适用于多种应用的双节环焊接性能

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Tenaris and Centro Sviluppo Materiali (CSM) launched a Joint Industrial Project aimed at developing heavy wall line pipes. The suitability for very severe applications, involving high service pressures and temperatures, the latter causing large strain fluctuations, in presence of an aggressive sour environment, is analyzed both theoretically and experimentally, including small and full scale pipe models.The full project program aims at developing a new generation heavy wall product, supported by: comprehensive laboratory analysis of the material response under severe mechanical loading in aggressive environment; and full scale testing program, including both pipe and girth weld. Both investigations are mainly addressed to the basic understanding of impact on design criteria from interaction between severe loading and aggressive environment. Three papers have been already presented, in previous 0MAE conferences, on this project.In the present paper, main outcomes of laboratory testing activities of the above program on girth welds for double jointing (fill passes by Submerged Arc Welding) are reported. A fitted for purpose special testing program, including mechanical and SSC laboratory scale testing, has been executed. Full thickness longitudinal specimens were extracted crossing girth weld to apply severe strain cycling. The strain cycling has been defined as extreme in terms of resistance against ratcheting for the pressurized pipeline, as deduced in a work reported in one of the previously mentioned papers.The girth welds exhibited very satisfactory performance during severe cyclic straining. Furthermore, mechanical and stress-corrosion properties of the As-Weld girth joint have been compared with the corresponding properties after severe straining and ageing. This comparison highlighted high level of mechanical and SSC resistance, even after the application of severe straining and ageing.
机译:Tenaris和Centro Sviluppo Materiali(CSM)发起了一项联合工业项目,旨在开发重型壁线管道。在理论上和实验上,包括小型和大型管道模型,都在理论上和实验上对适用于非常苛刻的应用的适用性进行了理论和实验分析,这些应用涉及较高的使用压力和温度,后者会在剧烈的酸性环境中导致较大的应变波动。开发新一代的厚壁产品,并得到以下方面的支持:全面的实验室分析,用于在恶劣环境下承受严重机械载荷时的材料响应;全面的测试程序,包括管道焊缝和环缝焊缝。两项研究的主要目的是从严峻的负荷与侵略性环境之间的相互作用对设计标准产生影响的基本理解上来。在之前的0MAE会议上,已经有关于该项目的三篇论文被提出。在本论文中,报告了上述程序的双接头环缝焊缝(埋弧焊填充道)的实验室测试活动的主要成果。已执行了针对目的的特殊测试程序,包括机械和SSC实验室规模的测试。穿过环缝焊缝提取全厚度纵向样品,以进行严格的应变循环。如先前一篇论文中报道的那样,在压力管道的棘轮阻力方面,应变循环被定义为极端。环缝焊缝在严重的循环应变下表现出非常令人满意的性能。此外,已将As-Weld环缝接头的机械和应力腐蚀性能与经过严格拉紧和老化后的相应性能进行了比较。该比较结果表明,即使在施加了严重的拉力和老化后,仍具有很高的机械和SSC抵抗力。

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