Thermal decomposition products in arc evaporated TiAlN/TiN multilayers
Author:
Publisher
AIP Publishing
Subject
Physics and Astronomy (miscellaneous)
Link
http://aip.scitation.org/doi/pdf/10.1063/1.2998588
Reference12 articles.
1. Defect structure and phase transitions in epitaxial metastable cubic Ti0.5Al0.5N alloys grown on MgO(001) by ultra‐high‐vacuum magnetron sputter deposition
2. Ab initio calculated binodal and spinodal of cubic Ti1−xAlxN
3. Mixing and decomposition thermodynamics ofc−Ti1−xAlxNfrom first-principles calculations
4. Thermal stability of arc evaporated high aluminum-content Ti1−xAlxN thin films
5. Mechanical properties and machining performance of Ti1−xAlxN-coated cutting tools
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1. Effect of modulation period and thickness ratio on the growth and mechanical properties of heteroepitaxial c-Ti0.4Al0.6N/h-Cr2N multilayer films;Surface and Coatings Technology;2023-11
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3. Self-layering of (Ti,Al)N by interface-directed spinodal decomposition of (Ti,Al)N/TiN multilayers: First-principles and experimental investigations;Materials & Design;2022-12
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