Kwokal A, Metikos-Huković M, Radić N, Poljak-Guberina R, Catović A
Department of Electrochemistry, Faculty of Chemical Engineering and Technology, University of Zagreb, P.O. Box 177, 10 000 Zagreb, Croatia.
J Mater Sci Mater Med. 2003 Jul;14(7):605-10. doi: 10.1023/a:1024070907256.
The tailoring of new corrosion-resistant alloys with specific properties has recently been performed mostly by the sputter deposition technique. The aim of this work was to investigate corrosion resistance of aluminum-tungsten (Al-W) amorphous alloys in artificial saliva solution, pH=5.5, based on the electrochemical methods of cyclic voltammetry and linear polarization. Thin alloy films were prepared on a sapphire substrate by magnetron codeposition. Completely amorphous films were obtained in the Al(80)W(20)-Al(67)W(33) composition range. Amorphous Al-W alloys exhibit very high corrosion resistance due to their homogeneous single-phase nature. The passive films spontaneously formed at their surface are uniform with characteristics of an insulator film and prevent corrosion progression in the bulk in a very demanding oral environment. The mechanism of increasing resistivity of Al-W alloys to pitting corrosion and generalized corrosion has been discussed in the view of increasing tungsten content in the alloy. Considering these exceptional corrosion properties and microhardness which falls in the range 7.5+/-1.6 Pa, Al-W alloys represent promising materials for dental applications.
最近,具有特定性能的新型耐腐蚀合金大多通过溅射沉积技术来制备。本工作的目的是基于循环伏安法和线性极化的电化学方法,研究铝钨(Al-W)非晶合金在pH = 5.5的人工唾液溶液中的耐腐蚀性。通过磁控共沉积在蓝宝石衬底上制备了合金薄膜。在Al(80)W(20)-Al(67)W(33)成分范围内获得了完全非晶态的薄膜。非晶态Al-W合金由于其均匀的单相性质而表现出非常高的耐腐蚀性。在其表面自发形成的钝化膜是均匀的,具有绝缘膜的特性,并在非常苛刻的口腔环境中防止本体腐蚀的进展。从合金中钨含量增加的角度讨论了Al-W合金耐点蚀和全面腐蚀能力增强的机制。考虑到这些优异的腐蚀性能以及7.5±1.6 Pa范围内的显微硬度,Al-W合金是牙科应用中有前景的材料。