Critical bonding temperature for the splat bonding formation during plasma spraying of ceramic materials

Controllable formation of splat bonding in thermally sprayed coatings is essential to fulfill requirements of versatile coating applications, because the bonding influences most of the coating properties. The splat bonding formation in single-layered and multi-layered Al2O3 and YSZ splats was examin...

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Published inSurface & coatings technology Vol. 235; pp. 841 - 847
Main Authors Yang, Guan-Jun, Li, Cheng-Xin, Hao, Shun, Xing, Ya-Zhe, Yang, Er-Juan, Li, Chang-Jiu
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier B.V 25.11.2013
Elsevier
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Abstract Controllable formation of splat bonding in thermally sprayed coatings is essential to fulfill requirements of versatile coating applications, because the bonding influences most of the coating properties. The splat bonding formation in single-layered and multi-layered Al2O3 and YSZ splats was examined at different deposition temperatures to reveal the factors dominating the splat bonding formation. Results show that the splat interface bonding was significantly influenced by the deposition temperature. There is a critical bonding temperature for the formation of the effective splat interface bonding in plasma-sprayed ceramic coating. The critical bonding temperature depends on coating materials. It is found that the critical bonding temperature is ~300°C or ~600°C for Al2O3 or YSZ, respectively. It will be shown that the critical bonding temperature concept can be used to explain qualitatively reasonably the lamellar bonding formation during multi-splats and coating deposition. •Deposition temperature significantly affects plasma-sprayed splat interface bonding.•There is a critical deposition temperature to form effective inter-splat bonding.•The critical temperature for Al2O3 and YSZ splats is 300°C and 600°C, respectively.•Bonding formation of multi-splat and coating deposition is qualitatively explained.
AbstractList Controllable formation of splat bonding in thermally sprayed coatings is essential to fulfill requirements of versatile coating applications, because the bonding influences most of the coating properties. The splat bonding formation in single-layered and multi-layered Al2O3 and YSZ splats was examined at different deposition temperatures to reveal the factors dominating the splat bonding formation. Results show that the splat interface bonding was significantly influenced by the deposition temperature. There is a critical bonding temperature for the formation of the effective splat interface bonding in plasma-sprayed ceramic coating. The critical bonding temperature depends on coating materials. It is found that the critical bonding temperature is ~300 degree C or ~600 degree C for Al2O3 or YSZ, respectively. It will be shown that the critical bonding temperature concept can be used to explain qualitatively reasonably the lamellar bonding formation during multi-splats and coating deposition.
Controllable formation of splat bonding in thermally sprayed coatings is essential to fulfill requirements of versatile coating applications, because the bonding influences most of the coating properties. The splat bonding formation in single-layered and multi-layered Al2O3 and YSZ splats was examined at different deposition temperatures to reveal the factors dominating the splat bonding formation. Results show that the splat interface bonding was significantly influenced by the deposition temperature. There is a critical bonding temperature for the formation of the effective splat interface bonding in plasma-sprayed ceramic coating. The critical bonding temperature depends on coating materials. It is found that the critical bonding temperature is ~300°C or ~600°C for Al2O3 or YSZ, respectively. It will be shown that the critical bonding temperature concept can be used to explain qualitatively reasonably the lamellar bonding formation during multi-splats and coating deposition. •Deposition temperature significantly affects plasma-sprayed splat interface bonding.•There is a critical deposition temperature to form effective inter-splat bonding.•The critical temperature for Al2O3 and YSZ splats is 300°C and 600°C, respectively.•Bonding formation of multi-splat and coating deposition is qualitatively explained.
Author Li, Chang-Jiu
Yang, Er-Juan
Yang, Guan-Jun
Hao, Shun
Xing, Ya-Zhe
Li, Cheng-Xin
Author_xml – sequence: 1
  givenname: Guan-Jun
  surname: Yang
  fullname: Yang, Guan-Jun
– sequence: 2
  givenname: Cheng-Xin
  surname: Li
  fullname: Li, Cheng-Xin
– sequence: 3
  givenname: Shun
  surname: Hao
  fullname: Hao, Shun
– sequence: 4
  givenname: Ya-Zhe
  surname: Xing
  fullname: Xing, Ya-Zhe
– sequence: 5
  givenname: Er-Juan
  surname: Yang
  fullname: Yang, Er-Juan
– sequence: 6
  givenname: Chang-Jiu
  surname: Li
  fullname: Li, Chang-Jiu
  email: licj@mail.xjtu.edu.cn
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Keywords Critical bonding temperature
Plasma spraying
Splat bonding
Deposition temperature
Plasma
Hot spraying
Plasma arc spraying
Surface treatments
Ceramics
Critical temperature
Language English
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Snippet Controllable formation of splat bonding in thermally sprayed coatings is essential to fulfill requirements of versatile coating applications, because the...
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SubjectTerms Aluminum oxide
Applied sciences
Bonding
Ceramic coatings
Ceramics
Coatings
Critical bonding temperature
Cross-disciplinary physics: materials science; rheology
Deposition
Deposition temperature
Exact sciences and technology
Formations
Materials science
Metals. Metallurgy
Physics
Plasma spraying
Production techniques
Splat bonding
Sprayed coatings
Surface treatment
Surface treatments
Yttria stabilized zirconia
Title Critical bonding temperature for the splat bonding formation during plasma spraying of ceramic materials
URI https://dx.doi.org/10.1016/j.surfcoat.2013.09.010
https://www.proquest.com/docview/1685795952
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