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纯钛及钛合金与包埋材料的界面氧化

Interfacial oxidations of pure titanium and titanium alloys with investments.

作者信息

Ban S, Watanabe T, Mizutani N, Fukui H, Hasegawa J, Nakamura H

机构信息

Department of Dental Material Science, School of Dentistry, Aichi-Gakuin University, 1-100, Kusumoto-cho, Chikusa-ku, Nagoya 464-8650, Japan.

出版信息

Dent Mater J. 2000 Dec;19(4):352-62. doi: 10.4012/dmj.19.352.

Abstract

External oxides of a commercially pure titanium (cpTi), Ti6Al4V alloy, and an experimental beta-type titanium alloy (Ti 53.4 wt%, Nb 29 wt%, Ta 13 wt%, and Zr 4.6 wt%) were characterized after heating to 600, 900, 1150, and 1400 degrees C in contact with three types of investments (alumina cement, magnesia cement, and phosphate-bonded) in air. XRD studies demonstrated that MgO, Li2TiO3 and/or Li2Ti3O7 were formed through reactions with the metal and the constituents in the magnesia cement-investment after heating to 900, 1150, and 1400 degrees C. Except for these conditions, TiO2 (rutile) was only formed on cpTi. For titanium alloys, the other components apart from Ti also formed simple and complex oxides such as Al2O3 and Al2TiO5 on Ti6Al4V, and Zr0.25Ti0.75Nb2O7 on the beta-type titanium alloy. However, no oxides containing V or Ta were formed. These results suggest that the constituents of titanium alloys reacted with the investment oxides and atmospheric oxygen to form external oxides due to the free energy of oxide formation and the concentration of each element on the metal surface.

摘要

将工业纯钛(cpTi)、Ti6Al4V合金和一种实验性β型钛合金(Ti 53.4 wt%、Nb 29 wt%、Ta 13 wt%和Zr 4.6 wt%)在空气中与三种类型的包埋材料(氧化铝水泥、氧化镁水泥和磷酸盐粘结剂)接触加热至600、900、1150和1400摄氏度后,对其外部氧化物进行了表征。X射线衍射研究表明,在加热至900、1150和1400摄氏度后,氧化镁水泥包埋材料中的金属和成分发生反应形成了MgO、Li2TiO3和/或Li2Ti3O7。除了这些条件外,仅在工业纯钛上形成了TiO2(金红石)。对于钛合金,除Ti之外的其他成分也在Ti6Al4V上形成了简单和复杂的氧化物,如Al2O3和Al2TiO5,在β型钛合金上形成了Zr0.25Ti0.75Nb2O7。然而,未形成含V或Ta的氧化物。这些结果表明,由于氧化物形成的自由能和金属表面各元素的浓度,钛合金的成分与包埋材料氧化物和大气中的氧气发生反应,形成了外部氧化物。

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