首页> 外文期刊>Journal of Applied Oral Science >Retrieval analysis of different orthodontic brackets: the applicability of electron microprobe techniques for determining material heterogeneities and corrosive potential
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Retrieval analysis of different orthodontic brackets: the applicability of electron microprobe techniques for determining material heterogeneities and corrosive potential

机译:检索不同正畸支架的分析:电子微探针技术在确定材料异质性和腐蚀电位中的适用性

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OBJECTIVE: The objective of this study was to investigate the applicability of micro-analytical methods with high spatial resolution to the characterization of the composition and corrosion behavior of two bracket systems. MATERIAL AND METHODS: The surfaces of six nickel-free brackets and six nickel-containing brackets were examined for signs of corrosion and qualitative surface analysis using an electron probe microanalyzer (EPMA), prior to bonding to patient's tooth surfaces and four months after clinical use. The surfaces were characterized qualitatively by secondary electron (SE) images and back scattered electron (BSE) images in both compositional and topographical mode. Qualitative and quantitative wavelength-dispersive analyses were performed for different elements, and by utilizing qualitative analysis the relative concentration of selected elements was mapped two-dimensionally. The absolute concentration of the elements was determined in specially prepared brackets by quantitative analysis using pure element standards for calibration and calculating correction-factors (ZAF). RESULTS: Clear differences were observed between the different bracket types. The nickel-containing stainless steel brackets consist of two separate pieces joined by a brazing alloy. Compositional analysis revealed two different alloy compositions, and reaction zones on both sides of the brazing alloy. The nickel-free bracket was a single piece with only slight variation in element concentration, but had a significantly rougher surface. After clinical use, no corrosive phenomena were detectable with the methods applied. Traces of intraoral wear at the contact areas between the bracket slot and the arch wire were verified. CONCLUSION: Electron probe microanalysis is a valuable tool for the characterization of element distribution and quantitative analysis for corrosion studies.
机译:目的:本研究的目的是研究具有高空间分辨率的微观分析方法在表征两个支架系统的成分和腐蚀行为方面的适用性。材料和方法:在粘结患者牙齿表面之前和临床使用四个月后,使用电子探针显微分析仪(EPMA)检查了六个无镍托槽和六个含镍托槽的表面是否腐蚀,并进行了定性表面分析。 。通过成分和地形模式下的二次电子(SE)图像和背散射电子(BSE)图像对表面进行了定性表征。对不同元素进行了定性和定量的波长色散分析,并通过定性分析将所选元素的相对浓度二维映射。使用纯元素标准品进行校准和计算校正因子(ZAF),通过定量分析,在特殊准备的括号中确定元素的绝对浓度。结果:不同支架类型之间观察到明显差异。含镍不锈钢支架由两个独立的零件组成,并通过钎焊合金连接在一起。成分分析表明,两种不同的合金成分以及钎焊合金两侧的反应区。无镍支架是单件,元素浓度仅有微小变化,但表面明显较粗糙。临床使用后,使用所应用的方法没有发现腐蚀现象。证实了在支架槽和弓丝之间的接触区域的口腔内磨损痕迹。结论:电子探针显微分析是表征元素分布和定量分析腐蚀研究的有价值的工具。

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