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加速老化对不同商用牙科树脂复合材料的一些力学性能和磨损的影响。

Effect of Accelerated Aging on Some Mechanical Properties and Wear of Different Commercial Dental Resin Composites.

作者信息

Oja Jonne, Lassila Lippo, Vallittu Pekka K, Garoushi Sufyan

机构信息

Department of Biomaterials Science and Turku Clinical Biomaterial Center-TCBC, Institute of Dentistry, University of Turku, 20500 Turku, Finland.

City of Turku Welfare Division, Oral Health Care, 20101 Turku, Finland.

出版信息

Materials (Basel). 2021 May 23;14(11):2769. doi: 10.3390/ma14112769.

Abstract

The aim of current in vitro research was to determine the effect of hydrothermal accelerated aging on the mechanical properties and wear of different commercial dental resin composites (RCs). In addition, the effect of expiration date of the composite prior its use was also evaluated. Five commercially available RCs were studied: Conventional RCs (Filtek Supreme XTE, G-aenial Posterior, Denfil, and >3y expired Supreme XTE), bulk-fill RC (Filtek Bulk Fill), and short fiber-reinforced RC (everX Posterior). Three-point flexural test was used for determination of ultimate flexural strength ( = 8). A vickers indenter was used for testing surface microhardness. A wear test was conducted with 15,000 chewing cycles using a dual-axis chewing simulator. Wear pattern was analyzed by a three-dimensional (3D) noncontact optical profilometer. Degree of C=C bond conversion of monomers was determined by FTIR-spectrometry. The specimens were either dry stored for 48 h (37 °C) or boiled (100 °C) for 16 h before testing. Scanning electron microscopy (SEM) was used to evaluate the microstructure of each material. Data were analyzed using ANOVA ( = 0.05). Hydrothermal aging had no significant effects on the surface wear and microhardness of tested RCs ( > 0.05). While flexural strength significantly decreased after aging ( < 0.05), except for G-aenial Posterior, which showed no differences. The lowest average wear depth was found for Filtek Bulk Fill (29 µm) ( < 0.05), while everX Posterior and Denfil showed the highest wear depth values (40, 39 µm) in both conditions. Passing the expiration date for 40 months did not affect the flexural strength and wear of tested RC. SEM demonstrated a significant number of small pits on Denfil's surface after aging. It was concluded that the effect of accelerated aging may have caused certain weakening of the RC of some brands, whereas no effect was found with one brand of RC. Thus, the accelerated aging appeared to be more dependent on material and tested material property.

摘要

当前体外研究的目的是确定热液加速老化对不同商用牙科树脂复合材料(RCs)机械性能和磨损的影响。此外,还评估了复合材料在使用前过期日期的影响。研究了五种市售RCs:传统RCs(Filtek Supreme XTE、G-aenial Posterior、Denfil和过期超过3年的Supreme XTE)、大块充填RC(Filtek Bulk Fill)和短纤维增强RC(everX Posterior)。采用三点弯曲试验测定极限弯曲强度(n = 8)。使用维氏压头测试表面显微硬度。使用双轴咀嚼模拟器进行15000次咀嚼循环的磨损试验。通过三维(3D)非接触光学轮廓仪分析磨损模式。通过傅里叶变换红外光谱法测定单体的C = C键转化率。在测试前,将试样在37°C下干燥储存48小时或在100°C下煮沸16小时。使用扫描电子显微镜(SEM)评估每种材料的微观结构。使用方差分析(α = 0.05)分析数据。热液老化对测试RCs的表面磨损和显微硬度没有显著影响(P > 0.05)。虽然老化后弯曲强度显著降低(P < 0.05),但G-aenial Posterior除外,其未显示出差异。Filtek Bulk Fill的平均磨损深度最低(29 µm)(P < 0.05),而everX Posterior和Denfil在两种情况下的磨损深度值最高(40、39 µm)。超过过期日期40个月对测试RC的弯曲强度和磨损没有影响。SEM显示老化后Denfil表面有大量小坑。得出的结论是,加速老化的影响可能导致某些品牌的RC出现一定程度的弱化,而一个品牌的RC未发现有影响。因此,加速老化似乎更依赖于材料和测试的材料性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2eb/8197073/bf2b688af9b1/materials-14-02769-g001.jpg

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