基于微观组织的镍基合金焊接热裂纹判据

Criterion for welding hot cracking of nickel-based alloys based on microstructure

  • 摘要: 概述了镍基合金焊接热裂纹(结晶裂纹、高温失塑裂纹)的评价方法、产生原因和防止措施,结合核用690合金焊接材料的特点,采用大厚度裂纹试验方法研究了Laves相、MC和M2(C,N)碳化物、MN氮化物对焊缝结晶裂纹、高温失塑裂纹的影响,提出了基于微观组织的镍基合金热裂纹判据,防止结晶裂纹判据为Laves相含量不大于0.9%(体积分数),防止高温失塑裂纹判据为MC + MN + M2(C,N)含量不小于0.18%,在此基础上,研制出新型690合金焊接材料—WHS693M焊丝。结果表明,焊丝抗裂性优良,熔敷金属力学性能满足三代核电主设备制造技术要求。

     

    Abstract: The evaluation methods, causes and prevention measures of nickel-based alloy welding hot cracking (solidification cracking, ductility dip cracking) are summarized. Combined with the characteristics of nuclear 690 alloy welding material, the effects of Laves phase, MC and M2(C,N) carbide, MN nitride on solidification cracking and ductility dip cracking were investigated by large thickness crack test, and the hot cracking criterion of nickel-based alloy based on microstructure was proposed, the criterion for preventing solidification cracking was that the Laves phase content was not more than 0.9% (volume fraction), and the criterion for preventing ductility dip cracking was MC + MN + M2(C,N) content not less than 0.18%. On this basis, a new 690 alloy welding material, WHS693M welding wire, was developed, which has excellent crack resistance and mechanical properties of deposition metal to meet the technical requirements of the manufacturing of third-generation nuclear power main equipment.

     

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