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低温管线K65热煨弯管用埋弧焊丝研制
引用本文:董利明,杨莉,戴军,潘鑫,张宇. 低温管线K65热煨弯管用埋弧焊丝研制[J]. 焊接学报, 2016, 37(12): 120-124
作者姓名:董利明  杨莉  戴军  潘鑫  张宇
作者单位:1.汽车工程学院, 常熟理工学院, 常熟 215500;江苏省(沙钢)钢铁研究院, 张家港 215625
摘    要:设计了NiMoTiB体系实芯焊丝用于低温管线K65热煨弯管的埋弧焊接,并采用φ4.0 mm焊丝、双面四丝埋弧焊开展了壁厚30.8 mm直缝管试制,然后利用热煨弯制工艺制成弯管,并分别测试了直缝管和弯管的焊缝金属微观组织及力学性能.结果表明,焊态直缝管焊缝组织以针状铁素体为主,以及少量贝氏体及马氏体-奥氏体岛(M-A);焊缝金属抗拉强度670 MPa,-40℃冲击吸收功为162 J.经过淬火+回火处理的热煨弯管焊缝主要由块状铁素体和尺寸1~5 μm的退化珠光体组成;焊缝金属抗拉强度665 MPa,-40℃冲击吸收功84 J,能够满足低温管线钢K65的标准要求.

关 键 词:管线钢   直缝管   热煨弯管   埋弧焊   低温韧性
收稿时间:2014-11-07

Development of submerged arc welding wire for fabrication of hot bend low-temperature pipeline steel K65 pipe
DONG Liming,YANG Li,DAI Jun,PAN Xin and ZHANG Yu. Development of submerged arc welding wire for fabrication of hot bend low-temperature pipeline steel K65 pipe[J]. Transactions of The China Welding Institution, 2016, 37(12): 120-124
Authors:DONG Liming  YANG Li  DAI Jun  PAN Xin  ZHANG Yu
Affiliation:1.College of Automotive Engineering, Changshu Institute of Technology, Changshu 215500, China;Iron & Steel Research Institute of Sha Steel of Jiangsu Province, Zhangjiagang 215625, China2.College of Automotive Engineering, Changshu Institute of Technology, Changshu 215500, China3.Iron & Steel Research Institute of Sha Steel of Jiangsu Province, Zhangjiagang 215625, China
Abstract:A NiMoTiB type solid wire was developed for submerged arc welding of hot bended K65 linepipe, and microstructure and mechanical property of the fabricated pipe with a wall thickness of 30.8 mm welded by two-sided four wire submerged arc welding were analyzed and tested. The results shows that the weld metal of as-welded pipe consists of acicular ferrite, a few bainite and M-A constituents, which has a tensile strength of 670 MPa and the impact absorbed energy is no less than 162 J at -40℃. Hot bending process changed the weld metal microstructure into a mix of blocky ferrite and pearlite, while possesses the tensile strength of 665 MPa and impact absorbed energy of no less than 84 J at -40℃.
Keywords:K65 pipeline  hot bend pipe  submerged arc welding  low-temperature toughness
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