首页> 外文期刊>The Journal of Prosthetic Dentistry >Microstructure, elemental composition, hardness and crystal structure study of the interface between a noble implant component and cast noble alloys.
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Microstructure, elemental composition, hardness and crystal structure study of the interface between a noble implant component and cast noble alloys.

机译:贵金属植入物成分和铸造贵金属之间界面的微观结构,元素组成,硬度和晶体结构研究。

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STATEMENT OF PROBLEM: Casting a high-gold alloy to a wrought prefabricated noble implant-component increases the cost of an implant. Selecting a less expensive noble alloy would decrease implant treatment costs. PURPOSE: The purpose of this study was to investigate the interfacial regions of a representative noble implant component and cast noble dental alloys and to evaluate the effects of porcelain firing cycles on the interface. MATERIAL AND METHODS: Six representative alloys (n=3) were cast to gold implant abutments (ComOcta). Scanning electron microscopy (SEM) was used to characterize microstructures. Compositions of interfacial regions and bulk alloys were obtained by energy-dispersive spectroscopy. Vickers hardness was also measured across the interface. By using Micro-X-ray diffraction, the phases were evaluated at 7 points perpendicular to the interface. The effects of porcelain firing cycles on microstructures, diffusion, hardness, and phases were also evaluated. For statistical evaluation of diffusion length and hardness, a 3-way repeated measures ANOVA was used. Pairwise comparisons of interest were conducted with Tukey pairwise comparisons or, when a significant interaction was found, Bonferroni-adjusted t-tests (overall alpha=.05). RESULTS: Microstructures of bulk alloys were predominantly maintained to a well-defined boundary for both as-cast and heat-treated conditions. An interaction band, 5-6 mum wide, was observed. The alloy grain size at the interface and the interaction band width increased after simulated porcelain firing. The extent of elemental diffusion from the interface was about 30 mum and not affected by simulated porcelain firing. Differences in Vickers hardness for the alloys were consistent with their compositions. Micro-XRD patterns indicated that substantial amounts of new phases had not formed at the interfacial regions. CONCLUSIONS: Less expensive noble alternatives to high-gold alloys provided comparable metallurgical compatibility with the noble implant component.
机译:问题陈述:将高金合金铸造到锻造的预制贵金属植入物部件上会增加植入物的成本。选择一种较便宜的贵金属将减少植入物的治疗成本。目的:这项研究的目的是调查代表性的贵族植入物组件和铸造贵金属牙科合金的界面区域,并评估烤瓷循环对界面的影响。材料与方法:将六种代表性合金(n = 3)铸造到金植入物基台(ComOcta)上。使用扫描电子显微镜(SEM)表征微观结构。界面区域和块状合金的组成通过能量色散光谱法获得。还测量了整个界面的维氏硬度。通过使用Micro-X射线衍射,在垂直于界面的7个点处评估了相。还评估了烧瓷循环对显微组织,扩散,硬度和相的影响。为了统计评估扩散长度和硬度,使用了三向重复测量方差分析。感兴趣的成对比较与Tukey成对比较进行,或者,当发现显着的相互作用时,进行Bonferroni调整的t检验(总体alpha = 0.05)。结果:对于铸态和热处理条件,块状合金的微观结构主要保持在明确定义的边界上。观察到5-6微米宽的相互作用带。模拟瓷烧制后,界面处的合金晶粒尺寸和相互作用带宽度增加。元素从界面的扩散程度约为30毫米,并且不受模拟陶瓷烧制的影响。合金的维氏硬度差异与其组成一致。微观X射线衍射图谱表明在界面区域未形成大量新相。结论:昂贵的贵金属替代贵金属可提供与贵金属植入物相当的冶金相容性。

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