Preliminary investigation on the bio-tribocorrosion behavior of porous nanostructured β-type titanium based biomedical alloys
暂无分享,去创建一个
S. Weiss | A. Iost | A. Montagne | A. Obrosov | M. Fellah | M. Z. Touhami | Mohamed A. Hussein | M. Abdul Samad | N. Hezil
[1] W. Müller,et al. Electrochemical deposition of Sr and Sr/Mg-co-substituted hydroxyapatite on Ti-40Nb alloy , 2019, Materials Letters.
[2] Libo Zhou,et al. Two ways of evaluating the wear property of Ti-13Nb-13Zr fabricated by selective laser melting , 2019, Materials Letters.
[3] M. Bram,et al. Manufacturing of Ti-10Nb based metal sheets by tape casting , 2019, Materials Letters.
[4] Zhanqiang Liu,et al. Incorporation of antibacterial ions on the micro/nanostructured surface and its effects on the corrosion behavior of titanium , 2018 .
[5] F. Toptan,et al. Preliminary investigation on the tribocorrosion behaviour of nanotubular structured Ti6Al4V surfaces , 2018 .
[6] Alain Iost,et al. Effect of Replacing Vanadium by Niobium and Iron on the Tribological Behavior of HIPed Titanium Alloys , 2017, Acta Metallurgica Sinica (English Letters).
[7] Xuetong Sun,et al. Comparative study on electrocrystallization of calcium phosphate ceramics on commercially pure titanium and selective laser melting titanium , 2017 .
[8] Q. Wei,et al. Nano modified SLA process for titanium implants , 2017 .
[9] M. Meratian,et al. The effect of pore structure on the mechanical properties of titanium scaffolds , 2016 .
[10] C. Suryanarayana,et al. Fabrication of nano-grained Ti–Nb–Zr biomaterials using spark plasma sintering , 2015 .
[11] Alain Iost,et al. Sliding friction and wear performance of the nano-bioceramic α-Al2O3 prepared by high energy milling , 2015 .
[12] Konda Gokuldoss Prashanth,et al. Comparison of wear properties of commercially pure titanium prepared by selective laser melting and casting processes , 2015 .
[13] M. Mathew,et al. Tribocorrosion response of the Ti6Al4V alloys commonly used in femoral stems , 2013 .
[14] L. You,et al. First principles study of low Young's modulus Ti–Nb–Zr alloy system , 2012 .
[15] S. Mischler,et al. Tribo-electrochemical characterization of metallic biomaterials for total joint replacement. , 2012, Acta biomaterialia.
[16] M. Roy,et al. Tribocorrosion behavior of β titanium alloys in physiological solutions containing synovial components , 2011 .
[17] Yufeng Zheng,et al. Corrosion behaviour and biocompatibility evaluation of low modulus Ti–16Nb shape memory alloy as potential biomaterial , 2009 .