Ntasi Argyro, Al Jabbari Youssef, Mueller Wolf Dieter, Eliades George, Zinelis Spiros
a PhD Graduate Student, Department of Biomaterials, School of Dentistry, National and Kapodistrian University of Athens, Athens, Greece.
Angle Orthod. 2014 May;84(3):508-15. doi: 10.2319/073013-569.1. Epub 2013 Nov 7.
To investigate the microstructure, hardness, and electrochemical behavior of four contemporary Ag-based soldering alloys used for manufacturing orthodontic appliances.
The Ag-based alloys tested were Dentaurum Universal Silver Solder (DEN), Orthodontic Solders (LEO), Ortho Dental Universal Solder (NOB), and Silver Solder (ORT). Five disk-shaped specimens were produced for each alloy, and after metallographic preparation their microstructural features, elemental composition, and hardness were determined by scanning electron microscopy with energy-dispersive X-ray (EDX) microanalysis, X-ray diffraction (XRD) analysis, and Vickers hardness testing. The electrochemical properties were evaluated by anodic potentiodynamic scanning in 0.9% NaCl and Ringer's solutions. Hardness, corrosion current (Icorr), and corrosion potential (Ecorr) were statistically analyzed by one-way analysis of variance and Tukey test (α=.05).
EDX analysis showed that all materials belong to the Ag-Zn-Cu ternary system. Three different mean atomic contrast phases were identified for LEO and ORT and two for DEN and NOB. According to XRD analysis, all materials consisted of Ag-rich and Cu-rich face-centered cubic phases. Hardness testing classified the materials in descending order as follows: DEN, 155±3; NOB, 149±3; ORT, 141±4; and LEO, 136±8. Significant differences were found for Icorr of NOB in Ringer's solution and Ecorr of DEN in 0.9% NaCl solution.
Ag-based soldering alloys demonstrate great diversity in their elemental composition, phase size and distribution, hardness, and electrochemical properties. These differences may anticipate variations in their clinical performance.
研究四种用于制造正畸矫治器的当代银基焊接合金的微观结构、硬度和电化学行为。
所测试的银基合金为登泰克通用银焊料(DEN)、正畸焊料(LEO)、正畸通用焊料(NOB)和银焊料(ORT)。每种合金制备五个圆盘形试样,经过金相制备后,通过带有能量色散X射线(EDX)微分析的扫描电子显微镜、X射线衍射(XRD)分析和维氏硬度测试来确定其微观结构特征、元素组成和硬度。通过在0.9%氯化钠溶液和林格氏溶液中进行阳极动电位扫描来评估电化学性能。采用单因素方差分析和Tukey检验(α = 0.05)对硬度、腐蚀电流(Icorr)和腐蚀电位(Ecorr)进行统计学分析。
EDX分析表明,所有材料均属于Ag-Zn-Cu三元体系。LEO和ORT确定有三种不同的平均原子对比相,DEN和NOB确定有两种。根据XRD分析,所有材料均由富银和富铜的面心立方相组成。硬度测试将材料按降序分类如下:DEN,155±3;NOB,149±3;ORT,141±4;LEO,136±8。发现NOB在林格氏溶液中的Icorr和DEN在0.9%氯化钠溶液中的Ecorr存在显著差异。
银基焊接合金在元素组成、相尺寸和分布、硬度和电化学性能方面表现出很大的差异。这些差异可能预示着它们临床性能的变化。