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瓷与钛及钛合金的粘结

Adhesion of porcelain to titanium and a titanium alloy.

作者信息

Suansuwan N, Swain M V

机构信息

Department of Prosthodontics, Faculty of Dentistry, Khon Kaen University, 40002, Khon Kaen, Thailand.

出版信息

J Dent. 2003 Sep;31(7):509-18. doi: 10.1016/s0300-5712(03)00071-x.

Abstract

OBJECTIVES

The objectives of the study were to determine the adhesion at the titanium-porcelain interface using a fracture mechanics approach, and to investigate the bonding mechanism using SEM and X-ray microanalysis.

METHODS

Specimens of four titanium-porcelain bonding systems were prepared in a rectangular shape for a four-point bending test on a universal testing machine. The pre-cracked specimen was subjected to a limited number of load and partial unload cycles, and the strain energy release rate or interfacial toughness (G(c) value) was calculated for each system. The interface was investigated in an SEM, which also enabled quantitative X-ray microanalysis, and comparison with a simulation of an atomically sharp interface to ascertain whether diffusion bonding occurred.

RESULTS

The Titanium/Titankeramik with GoldBonder bonding system showed the highest G(c) value (48.9+/-12.4 J/m(2)) among the groups whilst Titanium/Duceratin showed the lowest (12.9+/-3.6 J/m(2)). The former was significantly higher than that of nickel-chromium/porcelain (40.3+/-4.8 J/m(2)) from the previous study [Int J Prosthod 12 (1999) 547], which is a clinically accepted bonding system. The G(c) values of Titanium/Titankeramik and Titanium alloy/Titankeramik were 16.7+/-2.4 and 27.8+/-5.3 J/m(2), respectively. The X-ray microanalysis suggested that diffusion of some elements has occurred at the interface.

CONCLUSIONS

The strain energy release rate (G(c)-value) of titanium/Titankeramik with GoldBonder was highest among the four systems. X-ray microanalysis gave some evidence of diffusion of some elements, particularly of the porcelain into the metal, which may assist the bonding during the firing.

摘要

目的

本研究的目的是采用断裂力学方法测定钛 - 瓷界面的附着力,并使用扫描电子显微镜(SEM)和X射线微分析研究其结合机制。

方法

制备四种钛 - 瓷结合系统的矩形试样,在万能试验机上进行四点弯曲试验。对预裂纹试样进行有限次数的加载和部分卸载循环,计算每个系统的应变能释放率或界面韧性(G(c)值)。在扫描电子显微镜下研究界面,该显微镜还能进行定量X射线微分析,并与原子级尖锐界面的模拟结果进行比较,以确定是否发生了扩散结合。

结果

在各实验组中,采用GoldBonder结合系统的钛/钛瓷系统显示出最高的G(c)值(48.9±12.4 J/m²),而钛/Duceratin系统显示出最低的G(c)值(12.9±3.6 J/m²)。前者显著高于先前研究[《国际口腔修复学杂志》12 (1999) 547]中临床认可的镍铬/瓷结合系统(40.3±4.8 J/m²)。钛/钛瓷和钛合金/钛瓷的G(c)值分别为16.7±2.4和27.8±5.3 J/m²。X射线微分析表明,界面处发生了一些元素的扩散。

结论

在四个系统中,采用GoldBonder的钛/钛瓷系统的应变能释放率(G(c)值)最高。X射线微分析提供了一些证据,证明某些元素发生了扩散,特别是瓷中的元素扩散到金属中,这可能有助于在烧制过程中实现结合。

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