小口径钢管内壁TIG堆焊工艺参数优化及堆焊层的组织与性能

Optimization of TIG surfacing process parameters for inner wall of small diameter steel pipe and microstructure and properties of surfacing layer

  • 摘要:
    目的 旨在通过优化小口径钢管内壁钨极惰性气体保焊(Tungsten inert gas welding, TIG)堆焊的工艺参数,以提高管道的耐腐蚀性能。
    方法 通过正交试验优化了\phi 76 mm低碳钢管内壁TIG堆焊工艺,研究了堆焊层的显微组织与耐腐蚀性能。
    结果 获得的最优工艺参数为焊接电流160 A−焊接速度150 mm/min−送丝速度1.8 m/min。显微组织及耐蚀性研究表明,堆焊层各焊道内均因后一焊道的热影响而形成了敏化区;敏化区中析出了σ相和二次奥氏体,其铁素体相含量明显降低。电化学腐蚀试验时的点蚀主要发生在敏化区内。堆焊层表面Cr含量、铁素体相含量和耐蚀性明显高于堆焊层内部。
    结论 采用最优工艺参数熔敷的堆焊层表面在浸泡法腐蚀试验时未发生明显的腐蚀失重。

     

    Abstract: Objective The aim is to improve the corrosion resistance of the pipeline by optimizing the process parameters of tungsten inert gas welding (TIG) surfacing on the inner surface of small diameter steel pipes. Methods The TIG surfacing process for the inner wall of low-carbon steel pipe with a inner diameter of 76 mm is optimized through orthogonal experiments, and the microstructure and corrosion resistance of the surfacing layer are studied. Results The optimal parameters are obtained, such as 160 A welding current, 150 mm/min welding speed and 1.8 m/min wire feeding speed. Research results on microstructure and corrosion resistance shows that a sensitized zone is formed within each weld pass of the surfacing layer due to the thermal influence of the subsequent weld pass. In the sensitized zone, the precipitation of σ phase and secondary austenite phase take place, the content of ferrite phase significantly decreases. The pitting corrosion during electrochemical corrosion testing mainly occurs in the sensitized zone. The Cr content, ferrite phase content and corrosion resistance on the surface of the surfacing layer are significantly higher than those inside the surfacing layer. Conclusion No noticeable corrosion weight loss is observed on the surface of surfacing layer deposited with the optimized process parameters after immersion corrosion test.

     

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