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用于牙科修复的氧化锆与基于联合表面处理的复合树脂之间具有高结合强度。

High bonding strength between zirconia and composite resin based on combined surface treatment for dental restorations.

机构信息

Department of Prosthodontics, Stomatological Hospital, Tianjin Medical University, Tianjin, China.

出版信息

J Appl Biomater Funct Mater. 2020 Jan-Dec;18:2280800020928655. doi: 10.1177/2280800020928655.

Abstract

Zirconia is the preferred material for dental restorations; however, dental restorations are usually affected by zirconia fractures due to chipping and delamination of the veneer ceramic. One effective solution for repairing chemically inert zirconia frameworks is to strongly chemically bond them with the composite resin via surface modification. Thus, the bonding strength between the zirconia and composite resin determines the performance of dental restoration. Herein, we investigate the shear bond strength between zirconia ceramic and two ceramic repair systems before and after thermal cycling based on different surface pretreatments, including air-abrasion and a novel silane coupling agent. When treated with combined sandblasting, novel silane and 10-methacryloyloxydecyl hydrogen phosphate act as a bonding agent for the zirconia surface, and the maximum shear bond strength achieves 27.5 MPa, as measured by a universal testing machine through the average of 16 separate measurements. The results show that the combined treatment resists the interface damage caused by expansion and contraction during thermal cycling. The long-term bond durability is due to the micro-mechanical bond force formed by resin and ceramic, and the chemical bonds of Zr-O-Si at the interface. Results indicate that selective pretreating the surface results in high bond strength between the zirconia and the composite resin, which is meaningful to optimize dental restoration.

摘要

氧化锆是牙科修复的首选材料;然而,由于贴面陶瓷的剥落和分层,牙科修复体通常会受到氧化锆断裂的影响。修复化学惰性氧化锆框架的一种有效方法是通过表面改性将其与复合树脂牢固地化学结合。因此,氧化锆与复合树脂之间的结合强度决定了牙科修复体的性能。在此,我们研究了基于不同表面预处理(包括喷砂和新型硅烷偶联剂)的热循环前后氧化锆陶瓷与两种陶瓷修复系统之间的剪切结合强度。当采用联合喷砂、新型硅烷和 10-甲基丙烯酰氧基癸基氢磷酸酯处理时,它们充当氧化锆表面的结合剂,通过万能试验机通过 16 个单独测量的平均值测量,最大剪切结合强度达到 27.5 MPa。结果表明,联合处理可以抵抗热循环过程中膨胀和收缩引起的界面损伤。长期的结合耐久性归因于树脂和陶瓷形成的微机械结合力,以及界面处的 Zr-O-Si 化学键。结果表明,选择性预处理表面可在氧化锆和复合树脂之间产生高强度的结合,这对优化牙科修复具有重要意义。

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