期刊论文详细信息
JOURNAL OF ALLOYS AND COMPOUNDS 卷:577
Mechanical properties of porous metastable beta Ti-Nb-Zr alloys for biomedical applications
Article; Proceedings Paper
Brailovski, V.1  Prokoshkin, S.2  Gauthier, M.3  Inaekyan, K.1  Dubinskiy, S.1,2 
[1] Ecole Technol Super, Montreal, PQ H3C 1K3, Canada
[2] Natl Univ Sci & Technol MISIS, Moscow 119049, Russia
[3] Govt Canada, Natl Res Council, IMI, Boucherville, PQ J4B 6Y4, Canada
关键词: Metals and alloys;    Powder metallurgy;    Sintering;    Mechanical properties;    Shape memory;   
DOI  :  10.1016/j.jallcom.2011.12.157
来源: Elsevier
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【 摘 要 】

For this study, Ti-(20-22)Nb-(5-6)Zr (at%) ingots were manufactured by vacuum and argon arc melting. The obtained ingots were divided into two batches: the first subjected to cold rolling (CR) from 30 to 85% of thickness reduction, and subsequent annealing in the 450-600 degrees C temperature range (1 h). Regardless of the CR intensity, Ti-Nb-Zr samples subjected to 600 degrees C annealing showed the highest fatigue resistance during room-temperature cumulative cycling due to the stress-induced martensitic transformation occurring in the polygonized dislocation substructure (average subgrain size similar to 100 nm). The second batch was atomized to produce 100-mu m-size powders in order to manufacture open-cell porous material (cell size vary from 136 to 561 mu m) of 46% porosity by means of powder metallurgy using a polymer-based foaming process. Tensile, compression and bending testing were performed at RT on foam samples annealed at 450-600 degrees C (1 h). Results indicated that Young's modulus of Ti-Nb-Zr foams significantly decreases as compared to the as-sintered material: when annealing temperature increases from 450 to 600 degrees C, Young's modulus decreases from 10 +/- 2 GPa to 6 +/- 1 GPa. Under the same testing conditions, Ti-CP foams produced by the same technology and having similar porosity remain fairly insensible to post-sintering annealing. (C) 2012 V. Brailovski. Published by Elsevier B.V. All rights reserved.

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