Al Jabbari Youssef S, Barmpagadaki Xanthippi, Al Taweel Sara M, Zinelis Spiros
Dental Biomaterials Research and Development Chair, College of Dentistry, King Saud University, Riyadh, Saudi Arabia.
Department of Prosthetic Dental Sciences, College of Dentistry, King Saud University, Riyadh, Saudi Arabia.
J Dent Sci. 2016 Sep;11(3):266-271. doi: 10.1016/j.jds.2016.03.001. Epub 2016 Apr 15.
BACKGROUND/PURPOSE: The mechanical properties of pure gold (Au) are modified by thermal treatments. Thus, the aim of this study was to evaluate the effect of porcelain firing on the elemental composition, microstructure, and mechanical properties of electroformed Au crowns.
Twenty electroformed Au specimens were prepared and divided into two groups. The first group did not receive any treatment (ELEC), and the other group was subjected to porcelain firing (PFIR). After metallographic grinding and polishing, all were investigated by scanning electron microscopy, and elemental composition was determined using energy-dispersive X-ray spectroscopy (EDX). Internal porosity was identified by quantitative image processing. Mechanical properties including Martens hardness (HM), indentation modulus ( ), elastic index ( ), and Vickers hardness (HV) were determined by instrumented indentation testing. The results were statistically analyzed using unpaired test ( = 0.05).
A random distribution of tiny pores was identified in cross section, but no significant difference was found between groups [ELEC (%), 0.24 ± 0.13; PFIR (%), 0.31 ± 0.7]. Backscattered electron images revealed no mean atomic number contrast for both groups, indicating that the material was a single-phase alloy, whereas no differences between groups were identified in the composition of C, N, O, and Au after EDX analysis. By contrast, all mechanical properties tested showed statistically significant differences, with the PFIR group showing significantly lower HM, , and HV but increased compared with those of the ELEC group.
Although microstructure and elemental composition of electroformed Au crowns remain unchanged, the mechanical properties are significantly affected by the thermal treatment of porcelain firing.
背景/目的:纯金(Au)的机械性能可通过热处理进行改性。因此,本研究旨在评估烤瓷对电铸金冠的元素组成、微观结构和机械性能的影响。
制备20个电铸金样本并分为两组。第一组不接受任何处理(ELEC),另一组进行烤瓷(PFIR)。经过金相研磨和抛光后,所有样本均通过扫描电子显微镜进行观察,并用能量色散X射线光谱仪(EDX)测定元素组成。通过定量图像处理识别内部孔隙率。使用仪器化压痕测试测定包括马氏硬度(HM)、压痕模量( )、弹性指数( )和维氏硬度(HV)在内的机械性能。结果采用非配对 检验进行统计学分析( = 0.05)。
在横截面中发现了微小孔隙的随机分布,但两组之间未发现显著差异[ELEC(%),0.24 ± 0.13;PFIR(%),0.31 ± 0.7]。背散射电子图像显示两组均无平均原子序数对比度,表明该材料为单相合金,而EDX分析后两组在C、N、O和Au的组成上未发现差异。相比之下,所有测试的机械性能均显示出统计学上的显著差异,与ELEC组相比,PFIR组的HM、 和HV显著降低,但 增加。
尽管电铸金冠的微观结构和元素组成保持不变,但烤瓷的热处理对其机械性能有显著影响。