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根据金属部件制造工艺探讨牙科修复体中的金属-陶瓷相容性

Metal-Ceramic Compatibility in Dental Restorations According to the Metallic Component Manufacturing Procedure.

作者信息

Dawod Nazem, Miculescu Marian, Antoniac Iulian Vasile, Miculescu Florin, Agop-Forna Doriana

机构信息

Faculty of Material Science and Engineering, University Politehnica of Bucharest, 313 Splaiul Independentei, District 6, 060042 Bucharest, Romania.

SC Sesene Dent SRL, 37 Vulcan Judetul Street, District 3, 030055 Bucharest, Romania.

出版信息

Materials (Basel). 2023 Aug 10;16(16):5556. doi: 10.3390/ma16165556.

Abstract

In terms of production technology, metal-ceramic systems for dental restorations comply with a concrete algorithm, the efficiency of which is always dependent on the applications for which they are intended. The first stage involves obtaining metal support, followed by firing the ceramic on the surface of the metal to meet the list of functional and aesthetic requirements of a future restoration. The compatibility of the two materials-the metal component and the ceramic component-must be ensured in several respects: chemical compatibility, thermo-chemical compatibility, and mechanical compatibility. Thus, there is a need to simulate the thermal behavior of the metal-ceramic couple in its processing to achieve appropriate dental prostheses. In this study, three types of Co-Cr metal frames were manufactured using three different production technologies: conventional casting, milling (CAM), and selective laser melting (SLM). Composition analyses, scanning electron microscopy (SEM), and microstructural analyses of the metal-ceramic interface for each type of production technology, as well as the determination of the hardness and the thermal expansion coefficients of experimental materials and three-point bending tests, were carried out in this study. Considering all these aspects, we demonstrated the influence of the technology of producing the metallic part of the metal-ceramic bonding process in dental prostheses.

摘要

在生产技术方面,用于牙齿修复的金属 - 陶瓷系统遵循具体的算法,其效率始终取决于其预期的应用。第一阶段是获得金属支架,然后在金属表面烧制陶瓷,以满足未来修复体的功能和美学要求清单。必须在几个方面确保两种材料(金属成分和陶瓷成分)的兼容性:化学兼容性、热化学兼容性和机械兼容性。因此,有必要在其加工过程中模拟金属 - 陶瓷对的热行为,以获得合适的牙科假体。在本研究中,使用三种不同的生产技术制造了三种类型的钴铬金属框架:传统铸造、铣削(计算机辅助制造)和选择性激光熔化(SLM)。本研究对每种生产技术的金属 - 陶瓷界面进行了成分分析、扫描电子显微镜(SEM)和微观结构分析,以及对实验材料的硬度和热膨胀系数的测定和三点弯曲试验。考虑到所有这些方面,我们展示了牙科假体中金属 - 陶瓷结合过程中金属部件生产技术的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/981f/10456282/66722a816336/materials-16-05556-g001.jpg

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