Phase evolution of radio frequency magnetron sputtered Cr-rich (Cr,Zr)2O3 coatings studied by in situ synchrotron X-ray diffraction during annealing in air or vacuum

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作者
Ludvig Landälv
Lina Rogström
Jun Lu
Daniel Ostach
Fredrik Eriksson
Muhammad Junaid
Naureen Ghafoor
Erik Ekström
Ching-Lien Hsiao
Harald Leiste
Mats Ahlgren
Emmanuelle Göthelid
Björn Alling
Lars Hultman
Michael Stüber
Norbert Schell
Jens Birch
Per Eklund
机构
[1] Linköping University,Thin Film Physics Division, Department of Physics, Chemistry, and Biology (IFM)
[2] Linköping University,Nanostructured Materials, Department of Physics, Chemistry and Biology (IFM)
[3] Helmholtz-Zentrum Geesthacht,Institute of Materials Research
[4] Institute for Applied Materials (IAM),Karlsruhe Institute of Technology (KIT)
[5] Sandvik Coromant AB,Theoretical Physics, Department of Physics, Chemistry, and Biology (IFM)
[6] Linköping University,undefined
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摘要
The phase evolution of reactive radio frequency (RF) magnetron sputtered Cr0.28Zr0.10O0.61 coatings has been studied by in situ synchrotron X-ray diffraction during annealing under air atmosphere and vacuum. The annealing in vacuum shows t-ZrO2 formation starting at ∼750–800 °C, followed by decomposition of the α-Cr2O3 structure in conjunction with bcc-Cr formation, starting at ∼950 °C. The resulting coating after annealing to 1140 °C is a mixture of t-ZrO2, m-ZrO2, and bcc-Cr. The air-annealed sample shows t-ZrO2 formation starting at ∼750 °C. The resulting coating after annealing to 975 °C is a mixture of t-ZrO2 and α-Cr2O3 (with dissolved Zr). The microstructure coarsened slightly during annealing, but the mechanical properties are maintained, with no detectable bcc-Cr formation. A larger t-ZrO2 fraction compared with α-Cr2O3 is observed in the vacuum-annealed coating compared with the air-annealed coating at 975 °C. The results indicate that the studied pseudo-binary oxide is more stable in air atmosphere than in vacuum.
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页码:3735 / 3746
页数:11
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