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抗大变形厚壁X80M直缝埋弧焊钢管的组织及性能OA

Microstructure and Properties of X80M Large-deformation Resistant Heavy-wall SAWL Steel Pipe

中文摘要英文摘要

针对铌含量为0.075%的抗大变形Φ1 219 mm×33.0 mm X80M直缝埋弧焊钢管,分析贝氏体和铁素体两种不同比例的钢管在壁厚方向不同位置的化学成分和显微组织均匀性,并对比研究了两种组织形态的钢管管体的强度和韧性.结果表明,采用较高铌含量的合金化设计并结合合理的轧制工艺,能实现壁厚方向的化学成分均匀,可降低壁厚方向不同位置的显微组织和性能差异;贝氏体和铁素体双相显微组织合理的相比例是保证抗大变形X80M钢管管体纵向拉伸性能的关键.贝氏体组织比例占优的管体具有更高的夏比冲击吸收能量,但均匀伸长率较低;而铁素体组织比例占优的管体具有更好的均匀伸长率和DWTT性能,其韧-脆转变温度更低.

Aiming at the Φ1 219 mm×33.0 mm X80M large-deformation resistant SAWL steel pipe with 0.075%niobium content,the chemical composition and microstructure uniformity at different positions through the wall thickness of steel pipes with two different bainite/ferrite phase ratios are analyzed,and the strength and toughness of the pipe bodies with the two microstructure morphologies are compared.The results demonstrate that the alloying design with relatively high niobium content and adopting reasonable rolling process can achieve uniform chemical composition through the wall thickness,and reduce the differences in microstructure and properties at different positions;a reasonable phase ratio of bainite-ferrite dual-phase microstructure is the key to ensuring the longitudinal tensile properties of the bodies of the said X80M large-deformation resistant pipes;the pipe body dominated by bainite exhibits higher Charpy impact absorbed energy,but lower uniform elongation,while the one dominated by ferrite possesses better uniform elongation and DWTT performance,and a rather lower ductile-brittle transition temperature(DBTT).

何小东;张洪杰;张永青;陈越峰;HAN David

中国石油集团工程材料研究院有限公司·油气钻采输送装备全国重点实验室,陕西西安 710077||国际焊接研究中心,陕西西安 710077中国石油集团工程材料研究院有限公司·油气钻采输送装备全国重点实验室,陕西西安 710077||国际焊接研究中心,陕西西安 710077国际焊接研究中心,陕西西安 710077||中信金属股份有限公司,北京 100004中国石油集团工程材料研究院有限公司·油气钻采输送装备全国重点实验室,陕西西安 710077||国际焊接研究中心,陕西西安 710077国际焊接研究中心,陕西西安 710077

SAWL钢管X80M抗大变形双相组织性能

SAWL steel pipeX80Mlarge deformation resistancedual-phase microstructureproperties

《钢管》 2026 (2)

30-36,7

10.19938/j.steelpipe.1001-2311.2026.2.30.36

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