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Microstructure and Solid Particle Erosion Behavior of Ce-Y jointly modified Aluminide Coatings Prepared on DZ125 alloy by Pack Cementation Process
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School of material science engineering,Beifang University of Nationalities,,School of material science engineering,Beifang University of Nationalities,,School of material science engineering,Beifang University of Nationalities,School of material science engineering,Beifang University of Nationalities

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    Abstract:

    Al and Y modified aluminide coatings were prepared by pack cementation process at 1000℃ for 2 h. The microstructure and constituent phases of the co-deposition coatings were studied, the formative mechanism and erosion behavior of the coating were also analysed. The results show that the coating prepared by co-depositing Al-Ce-Y at 1000℃ for 2 h have a multiple layer structure: an outer layer composed of NiAl and a little Al3Ni2 , a middle layer composed of Al3Ni2 and a Al-rich inter-diffusion zone. Y and Ce mainly existed in the outer layer, which plays the role of reducing the grain size and promoting permeation. The solid particle erosion resistance of DZ125 alloy with Al-Ce-Y coating was significantly increased at the small impact angle, and then the erosion rate of Al-Ce-Y coatings increased with the increasing of impact angles, and the erosion mechanism shift from plough and cutting damage to brittle fracture and fatigue failure. The erosion rate of Al-Ce-Y coating is higher than that of DZ125 matrix when the impact angle at 90°.

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[Li Yongquan, Tang Bin, Geng Guihong, Lin Naiming, Hou Junfeng, Qin Chun. Microstructure and Solid Particle Erosion Behavior of Ce-Y jointly modified Aluminide Coatings Prepared on DZ125 alloy by Pack Cementation Process[J]. Rare Metal Materials and Engineering,2017,46(11):3388~3393.]
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History
  • Received:September 09,2016
  • Revised:November 18,2016
  • Adopted:December 07,2016
  • Online: December 13,2017
  • Published: