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Thermal Shock Behavior and Particle Erosion Resistance of Toughened GZ Coatings Prepared by Atmospheric Plasma Spraying
| Content Provider | MDPI |
|---|---|
| Author | Yang, Zining Wang, Weize Deng, Shujuan Fang, Huanjie Yang, Ting Wang, Lubin |
| Copyright Year | 2021 |
| Description | Gadolinium zirconate with excellent high-temperature phase stability and sintering resistance has become a very promising candidate material for a new generation of thermal barrier coatings (TBCs). However, the low fracture toughness of gadolinium zirconate greatly limits its application. In this study, gadolinium zirconate (GZ) and two kinds of toughened gadolinium zirconate (GZ/YSZ prepared by mixed powder of $Gd_{2}Zr_{2}O_{7}$ and YSZ and GSZC prepared by $(Gd_{0.925}Sc_{0.075})_{2}(Zr_{0.7}Ce_{0.3})_{2}O_{7}$ powder) double-layered TBCs were prepared by atmospheric plasma spraying (APS). The fracture toughness of the GZ/YSZ coating and GSZC coating were 9 times and 3.5 times that of GZ coating, respectively. The results of thermal shock test showed that the three TBCs exhibit different failure mechanisms. During the thermal shock test, cracking occurred at the interfaces between the YSZ layer and the BC or GZ/YSZ layer, while GSZC TBC failed due to premature cracking inside the GSZC layer. The particle erosion rate of the GZ, GZ/YSZ, and GZSC coatings were 1.81, 0.48, and 1.01 mg/g, respectively, indicating that the erosion resistance of coatings is related to their fracture toughness. Furthermore, the superior erosion resistance of the GZ/YSZ and GSZC coatings can be attributed to the conversion of crack propagation path during the erosion test. |
| Starting Page | 1477 |
| e-ISSN | 20796412 |
| DOI | 10.3390/coatings11121477 |
| Journal | Coatings |
| Issue Number | 12 |
| Volume Number | 11 |
| Language | English |
| Publisher | MDPI |
| Publisher Date | 2021-11-30 |
| Access Restriction | Open |
| Subject Keyword | Coatings Coatings and Films Gadolinium Zirconate Toughening Thermal Shock Erosion Thermal Barrier Coating |
| Content Type | Text |
| Resource Type | Article |