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Insight into point defects and impurities in titanium from first principles 被引量:1
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作者 Sanjeev K.Nayak Cain J.Hung +4 位作者 Vinit Sharma S.Pamir Alpay Avinash M.Dongare William J.Brindley rainer j.hebert 《npj Computational Materials》 SCIE EI 2018年第1期575-584,共10页
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... 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 processingmicrostructure-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,selfinterstitials,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. 展开更多
关键词 CORROSION MICROSTRUCTURE TITANIUM
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