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High-Temperature Thermal Shock Performance of Si-Ti-Cr Silicide Coating on Nb-Hf Alloy Surface in Atmosphere and Vacuum

  • Dongyang An*
  • , Chenfei Liu
  • , Shuang Zhao
  • , Haipeng Zhang
  • , Zengwu Tang
  • , Peng Xiao
  • , Jingmin Dai
  • , Yaming Wang
  • *Corresponding author for this work
  • Ltd.
  • Harbin Institute of Technology
  • Harbin Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

To improve the high-temperature thermal shock performance, the Si-Ti-Cr silicide coatings were prepared on Nb-Hf alloy by slurry sintering and high-temperature permeation methods. The high-temperature thermal shock performance of Si-Ti-Cr silicide-coated Nb-Hf alloys in atmosphere and vacuum was comparatively analyzed. The failure mechanism of Si-Ti-Cr coating in atmosphere and vacuum after thermal shock tests was determined by simulating the temperature and thermal stress distributions of the coating during thermal shock. Results show that the mass loss of the coating in vacuum is less than 0.8 mg/cm2 after 100 thermal shock cycles at 1300 °C. The mass gain of the coating in atmosphere is less than 3 mg/cm2 after 200 thermal shock cycles at 1600 °C. Therefore, the silicide coating exhibits excellent thermal shock resistance at 1300 °C in vacuum and at 1600 °C in atmosphere.

Translated title of the contributionNb-Hf 合金表面 Si-Ti-Cr 硅化物涂层在大气和真空中的高温热震性能
Original languageEnglish
Pages (from-to)3974-3980
Number of pages7
JournalXiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering
Volume51
Issue number11
StatePublished - Nov 2022

Keywords

  • failure mechanism
  • silicide coating
  • thermal shock performance
  • thermal stress distribution

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