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低合金高强钢双面双弧焊热循环对组织性能的影响

Effect of thermal cycles of DSAW on microstructure in low alloy high strength steel

  • 摘要: 针对低合金高强钢厚板焊研究了一种不清根高效焊接的新工艺——双面双弧焊(DSAW),即双面双脉冲TIG焊打底,双面双MAG焊填充。采用钻孔隐藏热电偶的方法对单TIG焊和双TIG焊打底的熔合区附近温度场进行了测量。结果表明,单TIG焊的t8/5t8/3比双TIG焊的要小,双TIG焊前电弧对后焊道有预热作用,而后电弧对前焊道有二次热处理作用。单TIG焊缝和粗晶区组织为粗大的板条马氏体,而双TIG焊缝区组织是马氏体+针状铁素体,粗晶区的板条状马氏体组织比单TIG焊要小,微观硬度曲线分析表明单TIG焊打底的焊缝区和粗晶区的硬度比双TIG焊的硬度高。

     

    Abstract: According to the low alloy high-strength steel thick plate welding, a new high efficiency technique which does not need back chipping-double-sided double arc welding(DSAW)was provided. Backing run with double-sided double pulsed gas metal arc welding, and other passes with double-sided double gas metal arc welding.The temperature fields of single TIG (tungsten inert-gas) welding and DSAW near the bond area were measured by the method of hiding thermal-couple in drilled hole.Compared the thermal cycles of two methods, the t8/5 and t8/3 of DSAW are higher.In DSAW, fore pass provides the rear pass with a preheat action and rear pass provides the fore pass with a postheat treatment.In single TIG welding, microstructure of weld and coarse grain zone is coarse martensitic, but in DSAW weld contains a few of acicular ferrilite besides of martensitic.Moreover, microstructure of coarse grain zone is smaller than that of single TIG welding.Microhardness distribution results indicated that hardness of DSAW was lower than that of single TIG welding.

     

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