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[镍铬合金和钴铬合金金属陶瓷系统的力学性能]

[Mechanical properties of metal-ceramic systems from nickel-chromium and cobalt-chromium alloys].

作者信息

Mirković Nemanja

机构信息

Vojnomedicinska akademija, Klinika za stomatologiju, Beograd.

出版信息

Vojnosanit Pregl. 2007 Apr;64(4):241-5. doi: 10.2298/vsp0704241m.

Abstract

BACKGROUND/AIM: Metal-ceramic bond strength and alloys' elastic modulus clearly determine the potential of alloy application, because the ceramic integrity during mastication depends on these two characteristics. The aim of this study was to evaluate metal-ceramic bond strenght and elastic modulus of cobalt-chromium alloys in making porcelain-fused-to-metal restorations, regarding the application of the most frequent nickel-chromium alloy.

METHODS

The research was performed as an experimental study. Six metal-ceramic samples were made from nickel-chromium alloy (Wiron 99) and cobalt-chromium alloy (Wirobond C), according to the manufactures manuals and instructions from ISO 9693: 1996. Three-point bending test was performed up to the ceramic fracture. The fracture load was measured on an universal testing machine (Zwick, type 1464), with cross-head speed of 0,05mm/min.

RESULTS

The results of this study confirmed the significant differences between the metal-ceramic bond strength (p < 0.01) and elastic modulus (p < 0.001) of nickel-chromium and cobalt-chromium alloys, where cobalt-chromium alloys showed higher values for both tested parameters.

CONCLUSION

Cobalt-chromium metal-ceramic alloys can successfully replace nickel-chromium alloys, especially for fabrication of long-span metal-ceramic bridges due to the great flexural strength.

摘要

背景/目的:金属-陶瓷结合强度和合金的弹性模量明确决定了合金的应用潜力,因为咀嚼过程中陶瓷的完整性取决于这两个特性。本研究的目的是评估钴铬合金在制作烤瓷熔附金属修复体时的金属-陶瓷结合强度和弹性模量,并与最常用的镍铬合金的应用情况进行对比。

方法

本研究为实验性研究。根据制造商手册和ISO 9693:1996的说明,用镍铬合金(Wiron 99)和钴铬合金(Wirobond C)制作了六个金属-陶瓷样本。进行三点弯曲试验直至陶瓷断裂。在万能试验机(Zwick,1464型)上测量断裂载荷,十字头速度为0.05mm/min。

结果

本研究结果证实了镍铬合金和钴铬合金在金属-陶瓷结合强度(p < 0.01)和弹性模量(p < 0.001)方面存在显著差异,其中钴铬合金在两个测试参数上均显示出更高的值。

结论

钴铬金属-陶瓷合金可以成功替代镍铬合金,特别是由于其具有较高的抗弯强度,可用于制作大跨度的金属-陶瓷桥。

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