核电厂低合金钢构件回火焊接修复工艺研究

Research on tempering welding repair process for low alloy steel components in nuclear power plants

  • 摘要:
    目的 以核电厂稳压器底部下封头套管贯穿件密封焊缝为对象,研发该类失效焊缝免于焊后热处理的孔内自动回火焊接修复工艺。
    方法 文中采用ABAQUS建立基于套管贯穿件孔内堆焊修复的1∶1局部特征结构进行回火焊接工艺仿真设计,并对设计的回火工艺参数进行工艺试验验证。
    结果 结果表明,工艺仿真设计以250~650 ℃为有效回火温度范围的回火工艺参数,即脉冲电流为180 A/140 A,焊接速度为150 mm/min,送丝速度为450 mm/min,搭接率约为60%,层/道间温度T≤66 ℃,堆焊3层即可实现除焊趾热影响区以外的组织调控。同时,不会在母材侧产生新的马氏体劣化区;焊趾区由于搭接焊缝端部结构的特殊性,存在一定的回火盲区,后续可在焊趾区补充焊道解决。
    结论 文中建立的全结构多层多道回火焊接工艺仿真设计方法具有可行性,可以快速指导基于应用对象的回火焊接修复工艺的开发制定;后续可进一步调整回火温度范围,实现回火组织的精准调控;回火焊接工艺仿真的准确性与焊缝模型的准确性相关,尤其是焊趾区域。

     

    Abstract: Objective Taking the seal welds of pipe penetrations on the bottom head of the pressurizer in nuclear power plants as the object, an automatic in-bore tempering welding repair process is developed for such failed welds to exempt from post-weld heat treatment. Methods A 1:1 local feature structure based on in-hole surfacing repair of pipe penetrations is modeled using ABAQUS to simulate the tempering welding process. The designed tempering parameters are experimentally validated. Results The results indicate that the tempering parameters, with an effective temperature range of 250 ℃ to 650 ℃, pulsed current is 180 A/140 A, welding speed is 150 mm/min, wire feed rate is 450 mm/min, overlap rate is about 60%, inter-pass temperature T≤66 ℃, enable microstructure regulation except for the heat-affected zone near the weld toe after three surfacing passes, at the same time, without inducing new martensite degradation zones on the base material side. Weld toe zone exists a tempering blind zone due to special characteristics of the end structure of lap welds, which can be addressed by adding supplementary weld passes in the weld toe zone. Conclusion The established full-structure multi-pass tempering welding process simulation method demonstrates feasibility, providing rapid guidance for developing application-specific tempering repair processes. Further adjustments to the tempering temperature range can achieve precise microstructure control. The accuracy of tempering welding simulations is closely related to the accuracy of the weld model, particularly in the weld toe zone.

     

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