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THE ESSENTIAL WELDING VARIABLE METHODOLOGY AND ITS APPLICATION IN WELDING PROCEDURE DEVELOPMENT FOR MECHANIZED GIRTH WELDS OF X100 LINE PIPES

机译:基本焊接可变方法及其在X100线管机械化环焊机焊接手术开发中的应用

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The mechanical properties of X100 pipeline girth welds are quite sensitive to welding parameters and the design range for a viable welding procedure is narrower compared to pipeline steels of lower grades. The use of a high-productivity welding process, such as dual-torch gas metal arc welding (GMAW), further compounds the dependency of weld properties on welding parameters. Consequently, for X100 pipe welding procedure development, the path to achieve the required weld performance can be a time-consuming and costly process. Developed in a recently completed project, the essential welding variable methodology provides an effective approach to optimize the development process for X100 pipe welding, with the benefits of reducing development time and saving cost. The present paper presents a practical case study of the methodology for girth welds. The present paper focuses on the information needed and the analyses performed in the application of the methodology to the process of welding procedure development for a dual-torch pulsed GMAW (GMAW-P) procedure. Using an analysis tool that can predict the thermal cycles from welding parameters and the available knowledge of microstructure and mechanical responses of both pipe materials and weld metals to welding thermal cycles (cooling rate), several candidates of dual-torch pulsed GMAW procedures were evaluated first for cooling times to help the determination of the final welding procedures. The finalized welding procedures used for the production of the qualification welds were evaluated to estimate the mechanical properties of the girth welds. The estimated weld properties will be compared to those from the test results when they become available.
机译:X100流水线环绕焊缝的机械性能对焊接参数非常敏感,并且与较低等级的管道钢相比,可行焊接程序的设计范围较窄。使用高生产率焊接工艺,如双炬气金属弧焊(GMAW),进一步复合了焊接性能对焊接参数的依赖性。因此,对于X100管道焊接程序开发,实现所需焊接性能的路径可能是耗时和昂贵的过程。基本焊接变量方法在最近完成的项目中开发,提供了一种有效的方法来优化X100管道焊接的开发过程,具有降低开发时间和节省成本的好处。本文提出了对围绕焊缝方法的实用案例研究。本文重点介绍所需的信息,并在将方法应用于双割炬脉冲GMAW(GMAW-P)程序的焊接程序开发过程中进行的分析。使用可以预测焊接参数的热循环的分析工具以及管材和焊接金属的微观结构和机械响应的可用知识和焊接热循环(冷却速率),首先评估了几种双割炬脉冲的GMAW程序的候选者为了冷却时间,有助于确定最终的焊接程序。用于生产资格焊缝的最终焊接程序以估算周长焊缝的机械性能。估计的焊接性能将与其可用时从测试结果中的那些进行比较。

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