Lee C M, Ju C P, Chern Lin J H
Department of Materials Science and Engineering, National Cheng-Kung University, Tainan, Taiwan.
J Oral Rehabil. 2002 Apr;29(4):314-22. doi: 10.1046/j.1365-2842.2002.00825.x.
The present work is a study of the microstructure, mechanical properties and corrosion behaviour of a series of binary Ti-Nb alloys with Nb contents up to 35 wt%, with emphasis placed on the structure-property relationship of the alloys. The results indicate that crystal structure and morphology of the Ti-Nb alloys are sensitive to the Nb content. The cast c.p. Ti has a hexagonal alpha phase with a lath type morphology. The alloys containing 15 wt% or less Nb are dominated by a hexagonal alpha' phase with an acicular, martensitic structure. When containing 17.5-25 wt% Nb, the alloys are primarily comprised of an orthorhombic alpha" phase. With 27.5 wt% Nb, metastable beta phase starts to be retained. With Nb contents higher than 30 wt%, the equi-axed beta phase is almost entirely retained. Small amounts of omega phase are detected in alloys containing 27.5 and 30 wt% Nb. Among all present alloys, Ti-10Nb and Ti-27.5Nb exhibit the highest strengths, while the alpha"-dominated (17.5 and 20Nb) and beta-dominated (> 30Nb) alloys have the lowest moduli. All Ti-Nb alloys show excellent corrosion resistance in Hank's solution at 37 degrees C. From the present data, the microhardness, bending strength and modulus of the various phases in Ti-Nb alloys are compared and tentatively summarized as follows: Microhardness: omega > alpha' > alpha" > beta > alpha (c.p. Ti) Bending strength: omega > alpha' > alpha" > beta > alpha (c.p. Ti) Bending modulus: omega > alpha (c.p. Ti) > alpha' > alpha" > beta
本研究工作对一系列铌含量高达35 wt%的二元Ti-Nb合金的微观结构、力学性能和腐蚀行为进行了研究,重点关注合金的结构-性能关系。结果表明,Ti-Nb合金的晶体结构和形态对铌含量敏感。铸造的纯钛具有六方α相,形态为板条状。铌含量为15 wt%及以下的合金以具有针状马氏体结构的六方α'相为主。当铌含量为17.5-25 wt%时,合金主要由斜方α"相组成。铌含量为27.5 wt%时,亚稳β相开始保留。铌含量高于30 wt%时,等轴β相几乎完全保留。在铌含量为27.5 wt%和30 wt%的合金中检测到少量ω相。在所有现有合金中,Ti-10Nb和Ti-27.5Nb表现出最高强度,而以α"相为主(铌含量为17.5和20 wt%)和以β相为主(铌含量> 30 wt%)的合金模量最低。所有Ti-Nb合金在37℃的汉克溶液中均表现出优异的耐腐蚀性。根据现有数据,对Ti-Nb合金中各相的显微硬度、抗弯强度和模量进行了比较,并初步总结如下:显微硬度:ω>α'>α">β>α(纯钛);抗弯强度:ω>α'>α">β>α(纯钛);抗弯模量:ω>α(纯钛)>α'>α">β