Li Bo-hua, Ye Jian-tao, Liao Juan-kun, Zhuang Pei-lin, Zhang Yi-ping, Li Jie-yin
Department of Prosthodontics, Sun Yat-Sen Memorial Hospital, Sun Yat-Sen University, Guangzhou, China; Department of Stomatology, Henan Provincial People's Hospital, Zhengzhou, China.
Department of Prosthodontics, Sun Yat-Sen Memorial Hospital, Sun Yat-Sen University, Guangzhou, China.
J Dent. 2014 Mar;42(3):319-28. doi: 10.1016/j.jdent.2013.11.020. Epub 2013 Dec 4.
The purpose of this study was to evaluate the efficacy of surface treatments on the bonding properties between a metal and ceramic.
Sixty metal specimens were divided equally into four groups of 15 samples each. These groups received different treatments (Gr1: 250μm Al2O3+preoxidation; Gr2: 250μm Al2O3+degassing; Gr3: 120μm Al2O3+preoxidation; Gr4: 120μm Al2O3+degassing). Bond strengths were evaluated using a three-point bending test. The results were analyzed using 2-way ANOVA and Tukey's test. Scanning electron microscopy and energy dispersive spectroscopy were used to observe the microscopic features, elemental compositions and distributions, and diffusion in the specimens. Mechanical profiler was used to measure the roughness of metal surface.
The bond strengths of the four groups ranged from 45.00±3.63MPa to 51.61±5.91MPa, with significant differences (P<.05). The specimen that received the pretreatment of 250μm Al2O3 air-particle abrasion+degassing had the highest bond strength. Heating under different oxygen partial pressures caused the final Pd-Ag alloys to have varying degrees of internal oxidation and different quantities of metallic nodules. None of the elements in either the ceramic or the Pd-Ag alloy layer diffused into the other layer.
The metal-ceramic specimen subjected to air-particle abrasion with 250μm Al2O3 and degassed before porcelain firing had significantly higher bond strength than specimens treated differently.
本研究旨在评估表面处理对金属与陶瓷之间结合性能的影响。
将60个金属试样平均分为四组,每组15个样本。这些组接受不同的处理(第1组:250μm Al2O3+预氧化;第2组:250μm Al2O3+除气;第3组:120μm Al2O3+预氧化;第4组:120μm Al2O3+除气)。使用三点弯曲试验评估结合强度。结果采用双向方差分析和Tukey检验进行分析。使用扫描电子显微镜和能量色散光谱观察试样的微观特征、元素组成和分布以及扩散情况。使用机械轮廓仪测量金属表面粗糙度。
四组的结合强度范围为45.00±3.63MPa至51.61±5.91MPa,差异有统计学意义(P<0.05)。接受250μm Al2O3空气颗粒磨损+除气预处理的试样具有最高的结合强度。在不同氧分压下加热导致最终的钯银合金有不同程度的内部氧化和不同数量的金属结节。陶瓷或钯银合金层中的任何元素均未扩散到另一层中。
在烤瓷前经过250μm Al2O3空气颗粒磨损和除气处理的金属-陶瓷试样的结合强度明显高于其他处理方式的试样。