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熱處理對鎳基合金涂層與基體結合界面的影響

Effect of heat treatment on interfaces between Ni-based alloy coatings and substrates

  • 摘要: 通過熱浸鍍法在普碳鋼表面成功制備鎳基合金涂層.為了提高鎳基合金涂層與鋼基體之間的結合強度,對鍍有鎳基合金涂層的基體進行了熱處理.研究了熱處理前、后結合界面處的顯微組織和力學性能.結果表明,與熱處理前相比,熱處理后界面附近的涂層中析出物長大,界面處存在不連續塊狀鐵的硼化物,界面兩側鎳、鐵互擴散距離增加,靠近界面的過渡帶由5~8μm變為20μm.熱處理前、后涂層均由γ-(Fe,Ni)、CrB、Cr2B和Cr3C2等相組成,過渡帶相組成為γ-(Fe,Ni)、微量CrB和Fe23(C,B)6.熱處理后,顯微硬度由界面向涂層內逐漸增加,界面結合強度由140MPa提高到200MPa.

     

    Abstract: Ni-based alloy coatings were prepared by hot dipping on plain steel substrates successfully. The coated plain steel was heat treated to improve the bonding strength of interfaces between the coatings and the substrates. The microstructure and the mechanical properties of the interface were investigated before and after heat treatment. It is shown that after heat treatment, precipitates on the side of the coating are larger than those before heat treatment. Noncontinuous lump iron borides are found in the interface. The interdiffusion distance of Ni and Fe locating on both sides of the interface increases, and the transition zone evolves from 5-8 μm to 20 μm after heat treatment. There are γ-(Fe, Ni), CrB, Cr2B, Cr3C2, etc. in the coatings before and after heat treatment. The transition zone is composed of three phases which are major γ-(Fe, Ni) and minor CrB and Fe23(C, B)6. From the interface to the coating, the microhardness increases gradually after heat treatment. The bonding strengths before and after heat treatment are 140 MPa and 200 MPa, respectively.

     

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