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Mechanisms of failure in porcelain-veneered sintered zirconia restorations

机译:瓷质烧结氧化锆修复体的失效机理

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The continuous increase in the demand for highly aesthetic and natural-appearing dental restorations and the development of strong ceramic materials has led to the adoption of sintered ceramics as new load-bearing components used in dental prosthetics.Zirconia is one of the most attractive restorative materials due to its advantageous mechanical properties and biocompatibility.Veneering porcelains are used to coat the surface of zirconia to enhance the aesthetic appearance of prostheses.Nevertheless,porcelain-veneered zirconia restorations are prone to failure primarily by the fracture of the veneering layers.In this paper,the nature of the interfacial bonding and failure modes on samples of broken porcelain-veneered sintered zirconia restorations were studied using Environmental Scanning Electron Microscopy (ESEM) with Energy-Dispersive X-ray (EDX) analysis.Typical fractographic features were observed in broken porcelain-zirconia prosthesis.The chipping mode fractures in the veneering porcelain indicated the dominance of the cohesive fracture mode,in agreement with clinical experience reported in the literature.The crack initiation and propagation within the veneered porcelain layer was also observed and analyzed by a further examination of the fractographic features on both the prosthetic samples and the fractured surface of porcelain zirconia bars.The result indicates that the crack initiated at the location of maximum stress (point of occlusal contact).In addition,it is surmised that the fragility of the prosthesis may result from the high Vickers hardness and the associated low toughness of porcelain.
机译:对高度美观和天然外观的牙齿修复物的需求不断增长,以及坚固陶瓷材料的发展已导致将烧结陶瓷用作牙科修复体中的新型承重组件。氧化锆是最具吸引力的修复材料之一由于其优越的机械性能和生物相容性,采用瓷饰面瓷覆盖氧化锆的表面,以增强假体的美学外观。尽管如此,瓷制氧化锆修复体主要由于饰面层的断裂而易于失效。 ,利用环境扫描电子显微镜(ESEM)和能量色散X射线(EDX)分析技术,研究了破碎的瓷质烧结的氧化锆修复体样品的界面键合和破坏模式的性质。 -氧化锆假体。切面模式断裂与文献报道的临床经验相一致,烤瓷表明了内聚性断裂模式的主导地位。还通过进一步检查假体样品和材料的分形特征,观察并分析了贴面烤瓷层内的裂纹萌生和扩展。结果表明,裂纹始于最大应力位置(咬合点)。此外,假体的脆性可能是由于维氏硬度高而相应的低。瓷的韧性。

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