Growth, microstructure and mechanical properties of (Ti, Al)N/VN nanomultilayers
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference15 articles.
1. Growth of single‐crystal TiN/VN strained‐layer superlattices with extremely high mechanical hardness
2. Reactive unbalanced magnetron sputter deposition of polycrystalline TiN/NbN superlattice coatings
3. Enhanced elastic modulus in composition‐modulated gold‐nickel and copper‐palladium foils
4. The microstructure and mechanical properties of TaN/TiN and TaWN/TiN superlattice films
5. Growth, structure, and microhardness of epitaxial TiN/NbN superlattices
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1. Effect of asymmetric interfaces on the spinodal decomposition of (Ti,Al)N/ZrN multilayers: First-principles and experimental investigations;Journal of Alloys and Compounds;2024-10
2. Thermal stability, mechanical properties, and tribological performance of TiAlXN coatings: understanding the effects of alloying additions;Journal of Materials Research and Technology;2022-03
3. Modulation Effect of Hardness on the Friction Coefficient and Its Mechanism Analysis of ZrB2/Mo Multilayers Synthesized by Magnetron Sputtering;Crystals;2021-01-16
4. Effect of low-temperature oxidation on the properties of TiVN/VN multilayercoatings;TURKISH JOURNAL OF PHYSICS;2019-04-08
5. Interfacial Model and Characterization for Nanoscale ReB2/TaN Multilayers at Desired Modulation Period and Ratios: First-Principles Calculations and Experimental Investigations;Nanomaterials;2018-06-10
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