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980MPa级高强钢焊接接头HAZ的组织和性能

Microstructure and mecharical properties of HAZ of 980 MPa high strength steel joints

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【作者】 冯伟曹睿彭云杜挽生田志凌陈剑虹

【Author】 FENG Wei1,CAO Rui1,PENG Yun2,DU Wansheng2,TIAN Zhiling2,CHEN Jianhong1 (1. State Key Laboratory of Gansu Advanced Non-Ferrous Metal Materials,Lanzhou University of Techenology,Lanzhou 730050,China; 2. Division of Strucrural Materials,Central Iron and Steel Research Institute,Beijing 100081,China).

【机构】 兰州理工大学甘肃省有色金属新材料省部共建国家重点实验室钢铁研究总院结构材料研究所

【摘要】 采用焊接热模拟的方法,研究一种980MPa级低碳贝氏体高强钢焊接接头HAZ不同区域,通过对各个区域的组织及相的分析,以及相应的拉伸及冲击试验研究了此类高强钢的组织和性能.结果表明,粗晶区的冲击性能最好,细晶区的冲击性能最低,为热影响区的薄弱环节.粗晶区组织为均匀粗细相间的板条贝氏体组织;在板条贝氏体上弥散析出碳化物;板条贝氏体界面上的奥氏体薄膜的存在是粗晶区韧性提高的原因.细晶区为孪晶马氏体+少量的板条马氏体,孪晶马氏体是导致细晶区性能下降的主要原因.

【Abstract】 Microstructure and mechanical properties of HAZ of 980 MPa low carbon bainite high strength steel joints were studied. The different regions of welded joint HAZ were simulated by welding thermal simulation technique. Microstructure observation,phase analysis,and corresponding tensile and impact test for different regions of welded joint HAZ were taken. The results indicate:the impact property of coarse grain zone is the best,while the impact property of fine grain zone is the worst. So the fine grain zone is the weakest part of the welded joint. Microstructure of coarse grain zone is uniform interweaved coarse and fine lath martensites,and precipitation acicular ferrite are distributed between the lath martensites. Toughness of coarse grain zone is increased owing to the austenite thin film adherent lath martensite interface. Microstructure of fine grain zone are twin martensite and a small number of lath maartensite,only minor acicular ferrite are distributed in the twin martensite. Toughness of fine-grained zone was decreased owing to twin martensite.

【基金】 国家自然科学基金项目(50671047);国家863高技术研究发展计划资助项目(2006AA03A206)
  • 【文献出处】 焊接学报 ,Transactions of the China Welding Institution , 编辑部邮箱 ,2009年07期
  • 【分类号】TG407
  • 【被引频次】39
  • 【下载频次】947
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