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水老化对低收缩光固化复合树脂表面硬度的影响。

Influence of water aging on surface hardness of low-shrinkage light-cured composite resins.

作者信息

Zhang Jiahui, Gao Ping, Wei Qianqian, Yan Min, Zhao Qi, Xu Tong, Zhu Song

机构信息

School and Hospital of Stomatology, Jilin University.

出版信息

J Oral Sci. 2019 Mar 28;61(1):89-94. doi: 10.2334/josnusd.17-0492. Epub 2019 Feb 26.

Abstract

This study evaluated the microhardness of four types of low-shrinkage composite resins and two types of universal composite resins with either 12 or 16 J/cm light power energy. Three disks were made for each group (n = 3) for a total of 36 specimens. The specimens were prepared by condensing the composite resin into a circular copper mold (diameter: 6 mm; height: 2 mm) and polymerizing with 700 mW/cm light power density. The microhardness values of the resin specimens were measured using a Vickers hardness tester after different storage durations. Z250 and Clearfil Majesty Posterior composites showed softer subsurfaces when comparing the 24 h samples for all six types. Conversely, Kalore GC and Admira (AD) composites showed harder subsurfaces during the 24 h samples. All the composite resins showed significant differences (P < 0.05) in microhardness values at one of the aging times when they were polymerized with either 12 or 16 J/cm light power energy. Composite resin AD had a higher microhardness value after polymerization with 12 J/cm than with 16 J/cm. The results indicated that low-shrinkage composite resins have better subsurface characteristics, and the light power energy of 16 J/cm is better for the polymerization of most composites.

摘要

本研究评估了四种低收缩复合树脂和两种通用复合树脂在12或16 J/cm光功率能量下的显微硬度。每组制作三个圆盘(n = 3),共36个样本。通过将复合树脂压缩到圆形铜模具(直径:6 mm;高度:2 mm)中并以700 mW/cm光功率密度进行聚合来制备样本。在不同储存时间后,使用维氏硬度测试仪测量树脂样本的显微硬度值。在比较所有六种类型的24小时样本时,Z250和Clearfil Majesty Posterior复合树脂显示出较软的次表面。相反,Kalore GC和Admira(AD)复合树脂在24小时样本中显示出较硬的次表面。当所有复合树脂在12或16 J/cm光功率能量下聚合时,在其中一个老化时间的显微硬度值上均显示出显著差异(P < 0.05)。复合树脂AD在以12 J/cm聚合后的显微硬度值高于以16 J/cm聚合后的显微硬度值。结果表明,低收缩复合树脂具有更好的次表面特性,并且16 J/cm的光功率能量对大多数复合树脂的聚合效果更好。

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