Department of Materials Science Engineering, Herbert Wertheim College of Engineering, University of Florida, Gainesville, Florida, USA.
Department of Restorative Dental Sciences, Division of Prosthodontics, University of Florida College of Dentistry, Gainesville, Florida, USA.
J Biomed Mater Res B Appl Biomater. 2021 Sep;109(9):1360-1368. doi: 10.1002/jbm.b.34796. Epub 2021 Feb 1.
This article describes the protocol for determining the cause of failure for retrieved failed implant supported fixed dental prostheses (FDPs) in a clinical study of three-unit bridges. The results of loading of flexure bars of different veneer compositions at different stress rates were presented for two veneer materials (leucite reinforced and fluorapatite glass-ceramic veneers) and a Y-TZP core zirconia ceramic used in the clinical study. From these results, the strengths of the fast loading conditions were used to determine the fracture toughness of these materials. Fractal dimension measurements of the flexure bars and selected FDPs of the same materials demonstrated that the values were the same for both the bars and the FDPs. This allowed the use of fracture toughness values from the flexure bars to determine the strengths of the FDPs. The failure analysis of clinically obtained FDP replicates to determine the size of the fracture initiating cracks was then performed. Using the information from the flexure bars and the size of the fracture initiating cracks for the failed FDPs, the strengths of the FDPs were determined. The clinical failures were determined to be most likely the result of repeated crack growth due to initial overload and continuous use after initial cracking.
本文描述了在一项三单位桥临床研究中,确定已修复失败的种植体支持固定义齿(FDP)失败原因的方案。本文呈现了两种贴面材料(透锂长石增强和氟磷灰石玻璃陶瓷贴面)和在临床研究中使用的 Y-TZP 核氧化锆陶瓷在不同应力速率下不同弯曲条的不同贴面组成的加载结果。从这些结果中,使用快速加载条件下的强度来确定这些材料的断裂韧性。对弯曲条和相同材料的选定 FDP 进行分形维数测量表明,条和 FDP 的值相同。这允许使用弯曲条的断裂韧性值来确定 FDP 的强度。然后对从临床获得的 FDP 复制品进行失效分析,以确定起始裂纹的大小。使用来自弯曲条的信息和失效 FDP 的起始裂纹大小,确定了 FDP 的强度。临床失效很可能是由于初始过载和初始开裂后的持续使用导致的反复裂纹扩展造成的。