Review of modern requirements for welding of pipe high-strength low-alloy steels

Yulia Karlina, Roman Kononenko, V. Ivancivsky, Maksim Popov, Fedor Deriugin, Vladislav Byankin
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Abstract

For many years, proven arc welding processes have been used to weld large pipes of oil and gas pipelines, the scope of which extends from manual arc welding with stick electrodes to the use of metal orbital welding machines. Introduction reflects that the creation of new steel compositions for oil and gas pipelines is an urgent task to ensure its high reliability. Research Methods. Low-carbon steels with ferrite-perlite structure are usually used in pipe production, but these steels are unable to meet the increased market demands. New grades of steel with bainitic structure are appearing. Results. The failure of welded joints of pipelines made of high-quality steel is becoming a serious problem for the pipeline industry. Discussion. This paper analyzes the characteristics of weld microstructure and its relationship with impact toughness. The prediction of impact toughness based on the microstructural characteristics of weld-seam metals is complicated due to a large number of parameters involved. The common practice linking this property to the microstructure of the last roll of a multi-pass weld turned out to be unsatisfactory because the amount of needle ferrite, the most desirable component, may not always be the main factor affecting the impact toughness. The present review reports on the most representative study regarding the microstructural factor in the welded seam of pipe steels. It includes a summary of the most important process variables, material properties, normative rule, as well as microstructure characteristics and mechanical properties of the joints. Conclusion. It is intended that this review will help readers with different backgrounds, from non-specialist welders or material scientists to specialists in various industrial applications and researchers.
管材高强度低合金钢焊接现代要求回顾
多年来,石油和天然气管道的大型管道焊接一直采用成熟的电弧焊接工艺,其范围从使用焊条电极的手工电弧焊接扩展到使用金属轨道焊接机。导言反映出,为确保石油和天然气管道的高可靠性,创造新的石油和天然气管道钢成分是一项紧迫任务。研究方法。管道生产中通常使用铁素体-波来石结构的低碳钢,但这些钢无法满足日益增长的市场需求。具有贝氏体结构的新钢种正在出现。结果。优质钢材制成的管道焊接接头失效正成为管道行业的一个严重问题。讨论。本文分析了焊缝微观结构的特点及其与冲击韧性的关系。由于涉及的参数较多,根据焊缝金属的微观结构特征预测冲击韧性非常复杂。将这一特性与多道焊缝最后一道轧辊的微观结构联系起来的常见做法并不令人满意,因为针状铁素体(最理想的成分)的数量并不总是影响冲击韧性的主要因素。本综述报告了有关钢管焊缝微结构因素的最具代表性的研究。其中包括对最重要的工艺变量、材料特性、规范规则以及接头的微观结构特征和机械特性的总结。结论。本综述旨在帮助具有不同背景的读者,从非专业焊工或材料科学家到各种工业应用领域的专家和研究人员。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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