层状陶瓷/Ni基复合涂层界面相容设计及其耐高温腐蚀磨损性能研究
ID:1368 View Protection:ATTENDEE Updated Time:2026-04-18 19:13:32 Hits:140 Oral Presentation

Start Time:2026-04-28 17:35(Asia/Shanghai)

Duration:15min

Session:EC 摩擦学表面工程论坛C » EC2EC下午场

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Abstract
NiCrBSi-CrB2 composite powders and coatings, with varying CrB2 mass fractions, were successfully prepared using spray granulation and high-velocity oxygen-fuel (HVOF) spraying. This study systematically investigated their hot corrosion behavior and underlying mechanisms in KCl-NaCl-Na2SO4 molten salt at 600 °C. The results showed that the composite powder consisted of γ-Ni, CrB2, CrB, CrSi2, Ni2B, and Ni3B phases. The phases within the coatings were similar to those in the powder, with the additional identification of Ni2Si and Ni3Si2 phases in coatings containing 30% and 40% CrB2. Crucially, the hot corrosion weight gain and kinetic constant of the coatings initially decreased and then increased with increasing CrB2 content. The coating with 20% CrB2 demonstrated optimal corrosion resistance, exhibiting the lowest corrosion weight gain (12.42 mg/cm2) and kinetic constant (0.80 mg2/(cm4·h)). The superior corrosion resistance is primarily attributed to grain refinement, which increases the short-range diffusion channels centered on grain boundaries and dislocations in the coating. The nano-crystalline and amorphous forms of Cr2O3 and SiO2 oxide scale on the coated surface effectively hinder the rapid diffusion of corrosive media, thereby reducing the corrosion rate.
Keywords
High-velocity oxygen-fuel spraying; NiCrBSi-CrB2 composite power and coating; High-temperature corrosion; Molten salts
Speaker
常诚
安徽工业大学

Submission Author
常诚 安徽工业大学
刘侠 安徽工业大学
张世宏 安徽工业大学
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Important Date
  • Conference Date

    Aug 10

    2026

    to

    Aug 12

    2026

  • Apr 26 2026

    Draft paper submission deadline

  • Apr 28 2026

    Registration deadline

Sponsored By
中国机械工程学会
Organized By
中国机械工程学会表面工程分会
中国科学院兰州化学物理研究所 润滑材料全国重点实验室
中国航天科技集团兰州空间技术物理研究所
甘肃省化学会
甘肃省材料学会
兰州城市学院