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- W2893577154 abstract "Abstract Porous titanium and its alloys have been considered as promising replacement for dense implants, as they possess low elastic modulus comparable to that of compact human bones and are capable of providing space for in-growth of bony tissues to achieve a better fixation. Recently, the additive manufacturing (AM) method has been successfully applied to the fabrication of Ti-6Al-4V cellular meshes and foams. Comparing to traditional fabrication methods, the AM method offers advantages of accurate control of complex cell shapes and internal pore architectures, thus attracting extensive attention. Considering the long-term safety in the human body, the metallic cellular structures should possess high fatigue strength. In this paper, the recent progress on the fatigue properties of Ti-6Al-4V cellular structures fabricated by the AM technique is reviewed. The various design factors including cell shapes, surface properties, post treatments and graded porosity distribution affecting the fatigue properties of additive manufactured Ti-6Al-4V cellular structures were introduced and future development trends were also discussed." @default.
- W2893577154 created "2018-10-05" @default.
- W2893577154 creator A5006309245 @default.
- W2893577154 creator A5031432325 @default.
- W2893577154 creator A5039820889 @default.
- W2893577154 creator A5043097043 @default.
- W2893577154 creator A5063554075 @default.
- W2893577154 creator A5064305769 @default.
- W2893577154 creator A5069877034 @default.
- W2893577154 creator A5071547862 @default.
- W2893577154 creator A5080102032 @default.
- W2893577154 date "2019-02-01" @default.
- W2893577154 modified "2023-10-14" @default.
- W2893577154 title "Fatigue behavior of Ti-6Al-4V cellular structures fabricated by additive manufacturing technique" @default.
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- W2893577154 doi "https://doi.org/10.1016/j.jmst.2018.09.066" @default.
- W2893577154 hasPublicationYear "2019" @default.