Phase distribution and thermal fatigue property of two kinds of Ni-based alloy spray-welding coatings
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摘要: 利用掃描電子顯微鏡、X射線衍射儀及透射電子顯微鏡觀察分析了含Cu和Mo(Ni-A)、不含Cu和Mo(Ni-B)兩種鎳基合金噴焊層樣品的組織、相分布和成分分布,分別測定了基體部位、熱影響區、結合區及涂層內的顯微硬度.利用高頻加熱爐對兩種噴焊層進行了熱疲勞實驗,對經熱疲勞實驗后噴焊層微觀組織進行了觀察,分析了噴焊層內的相分布和成分分布狀態,探討了熱疲勞裂紋產生和擴展的過程及規律.結果表明:兩種噴焊層內均有針狀富Cr第二相彌散分布,具有較好的熱疲勞性能.Ni-A樣品噴焊層可以分成兩個區域:在靠近基體的區域均勻地分布著塊狀富Cr第二相;在離表層200μm左右的區域內分布有針狀富Cr第二相,體積比塊狀富Cr第二相小幾十倍.Ni-B樣品噴焊層內只有針狀富Cr第二相,在整個噴焊層內均勻分布.Ni-A樣品噴焊層由于過渡區域的存在,具有比Ni-B樣品噴焊層更好的熱疲勞性能.熱疲勞實驗前后樣品的EDS分析結果表明兩種噴焊層內的各相有較好的熱穩定性.Abstract: SEM, TEM and X-ray diffraction methods were used to observe and analyze the microstructure, phase distribution and composition distribution of Cu and Mo-containing (Ni-A) and Cu and Mo-free (Ni-B) Ni-based alloy spray-welding coatings. The micro-Vickers hardness of the matrix and the heat-effected, combined and coating areas was measured. The thermal fatigue process was actualized by an induction heater to investigate the phase morphology and composition distribution and the phenomenon of thermal cracks appearing and spreading. Experimental results show that there exists needle Cr-rich phase with excellent thermal fatigue property in both Ni-A and Ni-B coatings. Ni-A coating can be divided into two areas:one is round-shaped Cr-rich phase which distributes near the matrix uniformly and the other is needle-shaped Cr-rich phase which distributes near the surface with a distance of about 200μm away from the outer surface of the coating. The volume of the needle-shaped Cr-rich phase is smaller than that of the roundshaped Cr-rich phase by several ten times. Compared with Ni-A coating, Ni-B coating has only needle-shaped Cr rich phase distributing in the spray coating uniformly. The thermal fatigue property of Ni-A coating is better than that of Ni-B because of a transition area in Ni-A coating. The results obtained by EDS analysis show that there is almost no diffusion of elements in Ni-A and Ni-B coatings during the thermal experiment and the two types of coatings have excellent thermal stability.
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