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胡艳华, 陈芙蓉, 解瑞军, 李海涛. 10CrMo910钢焊缝焊接热循环的实时检测[J]. 焊接学报, 2009, (10): 105-107.
引用本文: 胡艳华, 陈芙蓉, 解瑞军, 李海涛. 10CrMo910钢焊缝焊接热循环的实时检测[J]. 焊接学报, 2009, (10): 105-107.
HU Yanhua, CHEN Furong, XIE Ruijun, LI Haitao. In-situ detection of weld metal thermal cycle of 10CrMo910 steel[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2009, (10): 105-107.
Citation: HU Yanhua, CHEN Furong, XIE Ruijun, LI Haitao. In-situ detection of weld metal thermal cycle of 10CrMo910 steel[J]. TRANSACTIONS OF THE CHINA WELDING INSTITUTION, 2009, (10): 105-107.

10CrMo910钢焊缝焊接热循环的实时检测

In-situ detection of weld metal thermal cycle of 10CrMo910 steel

  • 摘要: 针对10CrMo910钢焊后焊缝及近缝区常出现硬化和冷裂纹等问题,结合生产实际,采用合适的焊接工艺,对10CrMo910钢进行了成功焊接.焊接过程中将热电偶直接埋在焊缝里,实现了焊缝焊接热循环曲线的实时检测.检测到的热循环峰值温度最高为1 701℃,较以往焊接热影响区热循环的研究结果提高了401℃.焊后的焊缝金属以不同的方式冷却,获得了10CrMo910钢油冷、空冷和砂冷后焊缝金属的焊接热循环曲线.

     

    Abstract: 10CrMo910 steel was welded by using proper parameters for solving the problem of cold crack and local hardening in the weld or adjacent metal weld of 10CrMo910 steel.Thermo-couples were laid in welded seam during welding to record temperatures in situ, and in-situ detection of thermal cycle about weld metal was realized.The detected maximum temperature during thermal process was 1701℃ and above 401℃ than the reported results about heat-affected zone.The welding thermal cycle curves with oil-cooled, air-cooled and sand-cooled for different cooling rates of welded joint were obtained.

     

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