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氧化锆的复合修复:不同喷砂预处理和各种通用粘结剂对剪切粘结强度的影响。

Composite Repair on Zirconia: Influence of Different Sandblasting Pretreatments and Various Universal Adhesives on Shear Bond Strength.

作者信息

Janson Malin, Bassier Vanessa, Liebermann Anja, Schoppmeier Christoph Matthias, Gregorio-Schininà Maria Di

出版信息

J Adhes Dent. 2025 Apr 16;27:53-64. doi: 10.3290/j.jad.c_1988.

Abstract

PURPOSE

This in-vitro study evaluated the effect of universal adhesives and sandblasting with 50 μm and 110 μm aluminum oxide particles (Al2O3) on the shear bond strength (SBS) between composite and zirconia in repair applications across different aging intervals.

MATERIALS AND METHODS

1296 zirconia specimens (Katana Zirconia HT) were randomized into three main groups: (A) sandblasting with 50 μm Al2O3, (B) sandblasting with 110 μm Al2O3, and (C) control. Each group was further divided into six subgroups: OPB (Optibond Universal), PBA (Prime&Bond Active), IBU (iBond Universal), CUBQ (Clearfil Universal Bond Quick), MBP (Monobond Plus), and SBUP (Scotchbond Universal Plus). Composite (Clearfil Majesty ES-2 Universal) was applied, and SBS (MPa) measured at baseline (24-h storage) at 30 and 90 days, and after 7 days + 5000 thermocycles (5-55°C). Failure modes were assessed at 40 × magnification. Analysis used a generalized linear model (GLM) with Bonferroni adjustment (α 0.05).

RESULTS

Sandblasting significantly increased SBS compared to controls, with Group B showing the highest durability after thermocycling, with values decreasing over aging periods. In Groups A and B IBU (21.43 ± 2.7 MPa; 25.60 ± 5.78 MPa), SBUP (19.26 ± 3.2 MPa; 23.62 ± 4.4 MPa), and CUBQ (19.92 ± 2.8 MPa; 22.75 ± 4.34 MPa) achieved the highest SBS, with adhesive failures being predominant and cohesive failures mainly in high-SBS subgroups.

CONCLUSION

Pretreatment with Al2O3 significantly enhances composite-zirconia bond strength, with larger grit sizes more effective. MDP-containing adhesives are recommended for reliable zirconia repairs.

摘要

目的

本体外研究评估了通用粘结剂以及使用50μm和110μm氧化铝颗粒(Al2O3)喷砂处理对不同老化时间间隔下复合材料与氧化锆修复应用中剪切粘结强度(SBS)的影响。

材料与方法

1296个氧化锆标本(Katana Zirconia HT)被随机分为三个主要组:(A)用50μm Al2O3喷砂处理,(B)用110μm Al2O3喷砂处理,以及(C)对照组。每组进一步分为六个亚组:OPB(Optibond通用粘结剂)、PBA(Prime&Bond Active粘结剂)、IBU(iBond通用粘结剂)、CUBQ(Clearfil通用粘结剂快速型)、MBP(Monobond Plus粘结剂)和SBUP(Scotchbond通用粘结剂加强型)。应用复合材料(Clearfil Majesty ES - 2通用型),并在基线(24小时储存)、30天和90天时以及7天 + 5000次热循环(5 - 55°C)后测量SBS(MPa)。在40倍放大倍数下评估失效模式。分析采用带有Bonferroni校正(α = 0.05)的广义线性模型(GLM)。

结果

与对照组相比,喷砂处理显著提高了SBS,B组在热循环后显示出最高的耐久性,其值随老化时间而降低。在A组和B组中,IBU(21.43±2.7MPa;25.60±5.78MPa)、SBUP(19.26±3.2MPa;23.62±4.4MPa)和CUBQ(19.92±2.8MPa;22.75±4.34MPa)获得了最高的SBS,主要失效模式为粘结剂失效,内聚破坏主要出现在高SBS亚组中。

结论

用Al2O3预处理可显著提高复合材料与氧化锆的粘结强度,较大粒度更有效。建议使用含MDP的粘结剂进行可靠的氧化锆修复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e44f/12020428/ef2bbd874da7/jad-27-53-g001.jpg

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