Microstructure and low temperature oxidation of pack Si-B co-deposition coating on pure Mo

Xiao Dong Tian, Xi Ping Guo, Zhong Qi Yin, Zhi Ping Sun, Li Jie Wang

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6 Scopus citations

Abstract

B-modified MoSi2 coatings on pure Mo surface were prepared by pack Si-B co-deposition process. The phase structure and composition of the coatings were studied by means of XRD, EDS and WDS techniques. Coating formation mechanism was investigated based on thermodynamics calculation. The results show that the Si-B co-deposition coatings prepared at 1100~1400 ℃ in the pack 16Si-4B-4NaF-76Al2O3 have a 5-layer structure. From surface to substrate, the coating can be divided into the MoSi2 out layer, the MoSi2+MoB second layer, the Mo5Si3 third layer, the MoB fourth layer and the Mo2B inner layer. The growth of the coating is dominated by the inward diffusion of Si and B. The deposition of Si mainly forms MoSi2 phase, and the inward diffusing B either diffuses into the substrate to form Mo-B composite layers or develops MoB dispersions in MoSi2. Oxidation behavior of the Si-B co-deposition coating at 600 ℃ reveals that B atoms can diffuse outward to the coating surface and oxidize to B2O3.

Original languageEnglish
Pages (from-to)171-175
Number of pages5
JournalCailiao Rechuli Xuebao/Transactions of Materials and Heat Treatment
Volume35
Issue number8
StatePublished - 25 Aug 2014

Keywords

  • Coating
  • MoSi
  • Oxidation
  • Pack cementation
  • Si-B co-deposition

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