Effect of Ceramic Veneering on the Microstructure of Pre-sintered Cobalt-Chromium, Compared to Pre-sintered Zirconia and Conventional Cast Alloys.

Q3 Dentistry Frontiers in Dentistry Pub Date : 2024-08-11 eCollection Date: 2024-01-01 DOI:10.18502/fid.v21i32.16362
Elie E Daou, Mutlu Özcan, Pascale Salameh, Ziad Salameh
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Abstract

Objectives: We aimed to evaluate ceramic-alloy interface and emphasize the alteration of alloy microstructure after ceramic layering. Materials and Methods: Thirty-two discs made from a ceramic-alloy combination of pre-sintered cobalt-chromium (CoCr), cast CoCr, cast nickel-chromium (NiCr), or pre-sintered zirconia were prepared with eight discs in each group. Four specimens were examined as manufactured and four were ceramic-layered. Scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), X-Ray diffractometer (XRD), and an atomic force microscope were used for analysis. Non-layered specimens received ceramic fire-heating without adding any ceramic. Alloy microstructure was compared before and after ceramic veneering or heating within the same group. Mean differences in grain size and surface roughness were compared among groups. P<0.05 was considered significant. Results: SEM showed a close bonding interface between alloys and ceramics. EDX demonstrated differences compared to the manufacturer's composition. Ceramic-layering reduced grain size for both milled alloys (P<0.05), whereas grain size increased in cast groups (P=0.011). Heat treatment did the same for the CoCr groups (P=0.013). Ceramic veneering increased the surface roughness of the cast CoCr (Gi) (P=0.029) and NiCr (Wi) (P=0.005) groups, whereas zirconia roughness average (Ra) showed a slight decrease (P=0.282). XRD showed no differences among zirconia, NiCr, and milled CoCr groups before and after veneering. Crystallite size differed between monoclinic and tetragonal phases in zirconia. Conclusion: The study highlights that ceramic-layering induces significant microstructural changes in alloys, enhancing bonding potential and mechanical stability. Pre-sintered materials show a fine homogeneous surface, optimizing ceramic adherence and potentially improving clinical outcomes.

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与预烧结氧化锆和传统铸造合金相比,陶瓷贴面对预烧结钴铬微观结构的影响
目的:我们旨在评估陶瓷-合金界面,并强调陶瓷分层后合金微观结构的改变。材料与方法:制备了 32 个由预烧结钴铬(CoCr)、铸造钴铬(CoCr)、铸造镍铬(NiCr)或预烧结氧化锆等陶瓷-合金组合而成的圆盘,每组 8 个圆盘。其中四个试样按原样检查,四个试样为陶瓷层状。分析中使用了扫描电子显微镜(SEM)、能量色散 X 射线光谱仪(EDS)、X 射线衍射仪(XRD)和原子力显微镜。非层状试样在不添加任何陶瓷的情况下接受陶瓷火加热。在同一组中,比较了陶瓷贴面或加热前后的合金微观结构。比较了各组之间晶粒尺寸和表面粗糙度的平均差异。结果扫描电子显微镜显示合金和陶瓷之间的界面结合紧密。EDX 显示了与制造商成分的差异。陶瓷层减少了两种研磨合金的晶粒尺寸(PC结论:这项研究强调,陶瓷分层会引起合金微观结构的显著变化,从而提高粘合潜力和机械稳定性。预烧结材料显示出精细均匀的表面,优化了陶瓷粘附性,并有可能改善临床效果。
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来源期刊
Frontiers in Dentistry
Frontiers in Dentistry Dentistry-General Dentistry
CiteScore
1.00
自引率
0.00%
发文量
34
审稿时长
12 weeks
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