Author:
Sevostyanov M. A.,Baikin A. S.,Kaplan M. A.,Kolmakov A. G.,Gudkov S. V.,Rebezov M. B.,Garnov S. V.
Abstract
Abstract
This alloy is shown to be homogeneous (Ti 65%, Nb 20%, Ta 10%, Zr 5%). A change in the elemental composition is observed only in the layer close to the surface with a thickness of about 100 nm. The alloy surface is depleted in titanium (∼20%) and enriched in tantalum (∼20%). There is also a large amount of oxides on the surface (∼50%). The alloy is single-phase with a β-Ti-type crystal lattice (cubic system, space group Im3m). The alloy has yield strength of about 550 MPa and a tensile strength of about 700 MPa. The Young’s modulus is about 50 GPa. The relative elongation of the alloy is about 1.4%. On a microscale, folds and longitudinal comb-like structures up to 0.5 μm in height are found on the surface of wires and plates made of the Ti–20Nb–10Ta–5Zr alloy. When analyzing nanotopology, it is found that, even between comb-like structures or at their tops, there are irregularities up to 100–150 nm in height.
Subject
General Physics and Astronomy,Mechanics of Materials,Computational Mechanics
Reference14 articles.
1. R. Langer and D. A. Tirrell, Nature (London, U.K.) 428, 487 (2004).
2. F. Matassi, A. Botti, L. Sirleo, C. Carulli, and M. Innocenti, Clin. Cases Miner. Bone. Metab. 10, 111 (2013).
3. A. Dehghanghadikolaei and B. Fotovvati, Materials 12, 1795 (2019).
4. W. Buehler and R. Wiley, Trans. Am. Soc. Met. 55, 269 (1962).
5. V. Ya. Erofeev and M. V. Kabanov, Dokl. Phys. 64, 53 (2019).
Cited by
5 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献