杂质
晶体缺陷
材料科学
钛
掺杂剂
微观结构
腐蚀
冶金
化学物理
凝聚态物理
结晶学
化学
兴奋剂
物理
光电子学
有机化学
作者
Sanjeev K. Nayak,Cain J. Hung,Vinit Sharma,S. P. Alpay,Avinash M. Dongare,William J. Brindley,Rainer J. Hebert
标识
DOI:10.1038/s41524-018-0068-9
摘要
Abstract Titanium alloys find extensive use in the aerospace and biomedical industries due to a unique combination of strength, density, and corrosion resistance. Decades of mostly experimental research has led to a large body of knowledge of the processing-microstructure-properties linkages. But much of the existing understanding of point defects that play a significant role in the mechanical properties of titanium is based on semi-empirical rules. In this work, we present the results of a detailed self-consistent first-principles study that was developed to determine formation energies of intrinsic point defects including vacancies, self-interstitials, and extrinsic point defects, such as, interstitial and substitutional impurities/dopants. We find that most elements, regardless of size, prefer substitutional positions, but highly electronegative elements, such as C, N, O, F, S, and Cl, some of which are common impurities in Ti, occupy interstitial positions.
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