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纳米二氧化硅表面渗透对含磷酸盐单体复合水泥与氧化锆粘结强度的影响

The Effect of Nano-Silica Surface Infiltration on Bond Strength of a Phosphate-Monomer-containing Composite Cement to Zirconia.

作者信息

Chen Chao, Li Shuang, Ou Meng En, Li Yue, Sun Qiang

出版信息

J Adhes Dent. 2023 Mar 20;25:79-86. doi: 10.3290/j.jad.b3974633.

Abstract

PURPOSE

To evaluate the bonding receptiveness of zirconia treated with nano-silica surface infiltration and the bond strength of composite cement after aging.

MATERIALS AND METHODS

Zirconia ceramic green bodies (Ceramill zolid, Amann Girbach) with dimensions of 10 x 10 x 4 mm were divided into three groups (n = 4): group C (control: no treatment after sintering), group S (sandblasted: 50-μm alumina airborne particle abrasion after sintering) and group N (nanosintered: infiltrated with nano-silica colloid, sintered, and then etched with hydrofluoric acid). Phase transformations were examined through X-ray diffraction (XRD). Composite resin (Filtek Z250, 3M Oral Care) was bonded to zirconia using the 10-MDP-containing composite cement Panavia F (Kuraray Noritake). The composite-cement/zirconia bond strength was immediately measured using the microtensile bond strength test (µTBS) as well as after three months of artificial aging in water (n = 20 microstick specimens/group). Failure mode patterns were examined using SEM.

RESULTS

The specimens of groups C and S, as tested by XRD, exhibited almost full tetragonal phases, while a small extent of tetragonal-monoclinic phase transformation (t→m) was observed for group N. Group N achieved the highest bond strengths (41.5 ± 8.6 MPa), which was significantly higher than that measured for groups C and S (p < 0.05). There was a significant drop in µTBS after 90 days of water storage for groups C and S. SEM revealed a decrease in the percentage of cohesive failure in groups N and S after water storage.

CONCLUSIONS

Infiltrating zirconia with nano-silica is a reliable method to establish a strong and stable bond to zirconia. The combination of surface infiltration with nano-silica and application of a phosphate monomer-containing composite cement can significantly improve the composite-cement/zirconia bond strength.

摘要

目的

评估经纳米二氧化硅表面渗透处理的氧化锆的粘结接受性以及老化后复合树脂水门汀的粘结强度。

材料与方法

将尺寸为10×10×4mm的氧化锆陶瓷生坯(Ceramill zolid,阿曼吉尔巴赫公司)分为三组(n = 4):C组(对照组:烧结后不处理)、S组(喷砂处理组:烧结后用50μm氧化铝空气颗粒磨损)和N组(纳米烧结组:用纳米二氧化硅胶体渗透、烧结,然后用氢氟酸蚀刻)。通过X射线衍射(XRD)检测相变。使用含10-MDP的复合树脂水门汀Panavia F(可乐丽诺瑞特公司)将复合树脂(Filtek Z250,3M口腔护理公司)粘结到氧化锆上。使用微拉伸粘结强度测试(µTBS)立即测量复合树脂水门汀/氧化锆的粘结强度,以及在水中人工老化三个月后测量(每组n = 20个微粘结试件)。使用扫描电子显微镜(SEM)检查失败模式类型。

结果

通过XRD测试,C组和S组的试件几乎呈现完全的四方相,而N组观察到有小程度的四方-单斜相变(t→m)。N组获得了最高的粘结强度(41.5±8.6MPa),显著高于C组和S组测量的值(p < 0.05)。C组和S组在储水90天后µTBS有显著下降。SEM显示储水后N组和S组内聚破坏的百分比降低。

结论

用纳米二氧化硅渗透氧化锆是建立与氧化锆牢固稳定粘结的可靠方法。纳米二氧化硅表面渗透与含磷酸盐单体的复合树脂水门汀的联合应用可显著提高复合树脂水门汀/氧化锆的粘结强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bac9/11734301/4be43fb48fd2/jad-25-79-g001.jpg

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