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经热酸蚀刻和底漆预处理的氧化锆的体外短期粘结性能

In vitro short-term bonding performance of zirconia treated with hot acid etching and primer conditioning etching and primer conditioning.

作者信息

Xie Haifeng, Chen Chen, Dai Wenyong, Chen Gang, Zhang Feimin

机构信息

Institute of Stomatology, Nanjing Medical University.

出版信息

Dent Mater J. 2013;32(6):928-38. doi: 10.4012/dmj.2013-010. Epub 2013 Nov 15.

Abstract

This study aimed to investigate and compare the resin bond strengths of zirconia conditioned as follows: alumina sandblasting; alumina sandblasting+application of 10-MDP-containing primer; alumina sandblasting+application of Z-Prime Plus or Metal/Zirconia Primer (new zirconia primers); tribochemical silica coating+silanization; hot acid etching in three different combinations [H2SO4/(NH4)2SO4, HF/HNO3, H2SO4/HF/HNO3]+application of 10-MDP-containing primer. Shear bond strengths (SBS) after water storage for 24 h and 40 days were measured to assess resin bonding performance. Surface and chemical properties of conditioned zirconia surfaces and primers were characterized using scanning electron microscopy, energy dispersive X-ray spectrometry, Fourier transform infrared spectroscopy, and atomic force microscopy. Surface roughness ranked in descending order was: hot acid etching > tribochemical silica coating > alumina sandblasting. Combination of tribochemical silica coating and silanization showed the highest initial SBS (12.46±2.13 MPa) (P<0.01). Etching with H2SO4/(NH4)2SO4 (13.15±3.24 MPa) and HF/HNO3 (13.48±2.15 MPa) showed significantly better bond durability (P<0.01). Hot acid etching seemed to be a promising surface roughening treatment to improve resin-zirconia bonding.

摘要

本研究旨在调查和比较以下几种处理方式的氧化锆的树脂粘结强度

氧化铝喷砂处理;氧化铝喷砂处理 + 应用含10 - MDP的底漆;氧化铝喷砂处理 + 应用Z - Prime Plus或金属/氧化锆底漆(新型氧化锆底漆);摩擦化学硅涂层 + 硅烷化处理;三种不同组合的热酸蚀刻[硫酸/(硫酸铵)、氢氟酸/硝酸、硫酸/氢氟酸/硝酸] + 应用含10 - MDP的底漆。测量在储存24小时和40天后的剪切粘结强度(SBS),以评估树脂粘结性能。使用扫描电子显微镜、能量色散X射线光谱仪、傅里叶变换红外光谱仪和原子力显微镜对处理后的氧化锆表面和底漆的表面及化学性质进行表征。表面粗糙度从高到低排序为:热酸蚀刻 > 摩擦化学硅涂层 > 氧化铝喷砂处理。摩擦化学硅涂层和硅烷化处理的组合显示出最高的初始SBS(12.46±2.13 MPa)(P<0.01)。用硫酸/(硫酸铵)(13.15±3.24 MPa)和氢氟酸/硝酸(13.48±2.15 MPa)蚀刻显示出显著更好的粘结耐久性(P<0.01)。热酸蚀刻似乎是一种有前景的表面粗糙化处理方法,可改善树脂与氧化锆的粘结。

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