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反应性高熵TiNbVTaZrHf-N涂层:结构、成分与力学性能

Reactive HiTUS TiNbVTaZrHf-N Coatings: Structure, Composition and Mechanical Properties.

作者信息

Lofaj František, Kvetková Lenka, Roch Tomáš, Dobrovodský Jozef, Girman Vladimír, Kabátová Margita, Beňo Matúš

机构信息

Institute of Materials Research of the Slovak Academy of Sciences, 917 24 Trnava, Slovakia.

Faculty of Mathematics, Physics and Informatics, Comenius University in Bratislava, 842 48 Bratislava, Slovakia.

出版信息

Materials (Basel). 2023 Jan 6;16(2):563. doi: 10.3390/ma16020563.

Abstract

High entropy metal sub-lattice stabilized nitride coatings based on multicomponent refractory transition metals (TM = Ti, Nb, V, Ta, Zr, Hf) are promising candidates for extreme conditions due to their high thermal, mechanical, and corrosion properties. The aims of the current work included the investigations of the possibilities of the novel High Target Utilization Sputtering (HiTUS) technique applied to reactive sputtering of TiNbVTaZrHf-xN coatings from the viewpoints of hysteresis behavior during reactive sputtering as well as the structure, composition, stoichiometry, and mechanical properties of the resulting coatings. With increasing nitrogen content, coating structures varied from amorphous in metallic alloy coatings to textured nano-columnar fcc structures. Despite certain deviations of TM from equiatomic concentrations, homogeneous solid solutions corresponding to single-phase multicomponent nitride analogous to high entropy stabilized compounds were obtained. Mechanical properties were found to be proportional to nitrogen content. The highest hardness H ~ 33 GPa and indentation modulus E ~ 400 GPa were found in a slightly sub-stoichiometric (~42 at% nitrogen) composition. H/E and limited pillar split measurements suggested that these coatings exhibit low fracture toughness (around 1 MPa.m). The work confirmed that reactive HiTUS is suitable for the preparation of multicomponent nitrides with the control of their stoichiometry and mechanical properties only via nitrogen additions.

摘要

基于多组分难熔过渡金属(TM = 钛、铌、钒、钽、锆、铪)的高熵金属亚晶格稳定氮化物涂层,因其高热学、力学和耐腐蚀性能,有望成为极端条件下的候选材料。当前工作的目的包括从反应溅射过程中的滞后行为以及所得涂层的结构、成分、化学计量和力学性能等角度,研究新型高靶材利用率溅射(HiTUS)技术应用于TiNbVTaZrHf-xN涂层反应溅射的可能性。随着氮含量的增加,涂层结构从金属合金涂层中的非晶态转变为织构化的纳米柱状面心立方结构。尽管过渡金属的浓度偏离了等原子浓度,但仍获得了与类似于高熵稳定化合物的单相多组分氮化物相对应的均匀固溶体。发现力学性能与氮含量成正比。在略低于化学计量比(约42原子%氮)的成分中发现了最高硬度H ~ 33 GPa和压痕模量E ~ 400 GPa。H/E和有限的柱体分裂测量表明,这些涂层表现出较低的断裂韧性(约1 MPa·m)。这项工作证实,反应性HiTUS仅通过添加氮就适用于制备多组分氮化物,并控制其化学计量和力学性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eba9/9864640/4a96ea54840b/materials-16-00563-g001.jpg

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