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等離子熔覆鐵基涂層組織結構及熱影響區特點

Microstructure of the Fe-based coating by plasma cladding and characteristics of its heat-affected zone

  • 摘要: 采用等離子束作為熱源,在16Mn鋼上熔覆一層鐵基合金涂層.分析了涂層的組織結構;并通過對等離子熔覆熱循環的特點和冶金過程的探討,著重對鋼基體的熱影響區進行了測試分析;將熱影響區劃分為過熱區、完全相變區和不完全相變區.過熱區顯微組織粗大,有魏氏體產生,硬度下降;完全相變區晶粒細化,硬度較高;不完全相變區組織只有部分發生轉變,晶粒大小不均勻.過熱區魏氏體組織的產生,使熱影響區有脆化的傾向.

     

    Abstract: With plasma as heat source, Fe-based alloy powder was cladded on the surface of 16Mn steel and the microstructure and phases of the clad coating were analyzed. The thermal cycle characteristics of plasma cladding and the cladding process were discussed. The heat-affected zone was studied and divided into three zones, i.e., overheated zone, perfect phase transformation zone and imperfect phase transformation zone. In the overheated zone, the microstructure was coarse, Widmanstaten structure generated and the hardness fell down. In the perfect phase transformation zone, the microstructure was refined, and hardness was higher. In the imperfect phase transformation zone, part phase transformation generated, and the microstructure was nonhomogeneous. The Widmanstaten structure in the overheated zone made the heat-affected zone brittle.

     

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