Mitigation of Platinum Depletion in Platinum Diffused Single Phase Bond Coat on CMSX-4 Superalloy
Pt-diffused bond coat with a mixture of γ/γ’ phase has just been developed in the recent decades as a cheaper alternative to the Pt-enriched β-phase Aluminide bond coat that contains a higher content of Al. However, concerns are raised on the inevitable depletion of Pt near the coating interface tha...
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doaj-f50606b4571f4d80b2a3b50a28b01d0f2021-06-01T01:48:39ZengMDPI AGCoatings2079-64122021-05-011166966910.3390/coatings11060669Mitigation of Platinum Depletion in Platinum Diffused Single Phase Bond Coat on CMSX-4 SuperalloyMingwen Bai0Ying Chen1Yongle Sun2Ping Xiao3Department of Materials, University of Manchester, Manchester M13 9PL, UKDepartment of Materials, University of Manchester, Manchester M13 9PL, UKWelding Engineering and Laser Processing Centre, School of Aerospace, Transport and Manufacturing, Cranfield University, Cranfield MK43 0AL, UKDepartment of Materials, University of Manchester, Manchester M13 9PL, UKPt-diffused bond coat with a mixture of γ/γ’ phase has just been developed in the recent decades as a cheaper alternative to the Pt-enriched β-phase Aluminide bond coat that contains a higher content of Al. However, concerns are raised on the inevitable depletion of Pt near the coating interface that may endanger the component after long-term service. In this study, modified Pt-diffused bond coats with a single phase (γ or γ’) were made by applying selective etching on CMSX-4 single crystal superalloys prior to the electroplating of Pt. The single-phase bond coats show distinctive diffusion behaviour in comparison with the conventional γ/γ’ bond coat. Surprisingly, Pt remains more stable in the γ’-phase bond coat with significantly less depletion after diffusion, which implies a potential in saving a considerable amount of Pt. On the other hand, however, the depletion of Pt is more severe in the γ-phase bond coat. The mechanism that governs the diffusion behavior of Pt in the γ and γ’-phase was also discussed that mainly concerns with thermodynamic and kinetic factors.https://www.mdpi.com/2079-6412/11/6/669bond coatplatinumdiffusionthermodynamicthermal barrier coatings |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Mingwen Bai Ying Chen Yongle Sun Ping Xiao |
spellingShingle |
Mingwen Bai Ying Chen Yongle Sun Ping Xiao Mitigation of Platinum Depletion in Platinum Diffused Single Phase Bond Coat on CMSX-4 Superalloy Coatings bond coat platinum diffusion thermodynamic thermal barrier coatings |
author_facet |
Mingwen Bai Ying Chen Yongle Sun Ping Xiao |
author_sort |
Mingwen Bai |
title |
Mitigation of Platinum Depletion in Platinum Diffused Single Phase Bond Coat on CMSX-4 Superalloy |
title_short |
Mitigation of Platinum Depletion in Platinum Diffused Single Phase Bond Coat on CMSX-4 Superalloy |
title_full |
Mitigation of Platinum Depletion in Platinum Diffused Single Phase Bond Coat on CMSX-4 Superalloy |
title_fullStr |
Mitigation of Platinum Depletion in Platinum Diffused Single Phase Bond Coat on CMSX-4 Superalloy |
title_full_unstemmed |
Mitigation of Platinum Depletion in Platinum Diffused Single Phase Bond Coat on CMSX-4 Superalloy |
title_sort |
mitigation of platinum depletion in platinum diffused single phase bond coat on cmsx-4 superalloy |
publisher |
MDPI AG |
series |
Coatings |
issn |
2079-6412 |
publishDate |
2021-05-01 |
description |
Pt-diffused bond coat with a mixture of γ/γ’ phase has just been developed in the recent decades as a cheaper alternative to the Pt-enriched β-phase Aluminide bond coat that contains a higher content of Al. However, concerns are raised on the inevitable depletion of Pt near the coating interface that may endanger the component after long-term service. In this study, modified Pt-diffused bond coats with a single phase (γ or γ’) were made by applying selective etching on CMSX-4 single crystal superalloys prior to the electroplating of Pt. The single-phase bond coats show distinctive diffusion behaviour in comparison with the conventional γ/γ’ bond coat. Surprisingly, Pt remains more stable in the γ’-phase bond coat with significantly less depletion after diffusion, which implies a potential in saving a considerable amount of Pt. On the other hand, however, the depletion of Pt is more severe in the γ-phase bond coat. The mechanism that governs the diffusion behavior of Pt in the γ and γ’-phase was also discussed that mainly concerns with thermodynamic and kinetic factors. |
topic |
bond coat platinum diffusion thermodynamic thermal barrier coatings |
url |
https://www.mdpi.com/2079-6412/11/6/669 |
work_keys_str_mv |
AT mingwenbai mitigationofplatinumdepletioninplatinumdiffusedsinglephasebondcoatoncmsx4superalloy AT yingchen mitigationofplatinumdepletioninplatinumdiffusedsinglephasebondcoatoncmsx4superalloy AT yonglesun mitigationofplatinumdepletioninplatinumdiffusedsinglephasebondcoatoncmsx4superalloy AT pingxiao mitigationofplatinumdepletioninplatinumdiffusedsinglephasebondcoatoncmsx4superalloy |
_version_ |
1721411529195126784 |