【24h】

Effect of artificial aging on the roughness and microhardness of sealed composites.

机译:人工老化对密封复合材料粗糙度和微硬度的影响。

获取原文
获取原文并翻译 | 示例
       

摘要

STATEMENT OF THE PROBLEM: The application of surface sealant could improve the surface quality and success of composite restorations; however, it is important to assess the behavior of this material when subjected to aging procedures. PURPOSE: To evaluate the effect of artificial aging on the surface roughness and microhardness of sealed microhybrids and nanofilled composites. MATERIALS AND METHODS: One hundred disc-shaped specimens were made for each composite. After 24 hours, all samples were polished and surface sealant was applied to 50 specimens of each composite. Surface roughness (Ra) was determined with a profilometer and Knoop microhardness was assessed with a 50-g load for 15 seconds. Ten specimens of each group were aged during 252 hours in a UV-accelerated aging chamber or immersed for 28 days in cola soft drink, orange juice, red wine staining solutions, or distilled water. Data were analyzed by two-way analysis of variance and Fischer's test (alpha=0.05). RESULTS: Artificial aging decreased microhardness values for all materials, with the exceptions of Vit-l-escence (Ultradent Products Inc., South Jordan UT, USA) and Supreme XT (3M ESPE, St. Paul, MN, USA) sealed composites; surface roughness values were not altered. Water storage had less effect on microhardness, compared with the other aging processes. The sealed materials presented lower roughness and microhardness values, when compared with unsealed composites. Conclusions: Aging methods decreased the microhardness values of a number of composites, with the exception of some sealed composites, but did not alter the surface roughness of the materials. CLINICAL SIGNIFICANCE: The long-term maintenance of the surface quality of materials is fundamental to improving the longevity of esthetic restorations. In this manner, the use of surface sealants could be an important step in the restorative procedure using resin-based materials.
机译:问题声明:表面密封剂的应用可以提高复合修复的表面质量和成功;但是,重要的是在经过老化程序时评估这种材料的行为。目的:评价人工老化对密封微杂料和纳米填充复合材料的表面粗糙度和显微硬度的影响。材料和方法:为每种复合材料制造一百个盘形标本。 24小时后,将所有样品抛光,并将表面密封剂施加到每个复合材料的50个标本。用50g载荷测定表面粗糙度(Ra),用50g负荷评估Knoop微硬度15秒。每组的10个标本在UV加速老化室中252小时老化,或者在可乐软饮料,橙汁,红葡萄酒染色溶液或蒸馏水中浸入28天。通过双向差异分析和费舍的测试分析数据(Alpha = 0.05)。结果:人工老化对所有材料的显微硬度值下降(Ultradent Product Inc.,South Jordan Ut,USA)和最高XT(3M Espe,St.Paul,Mn,USA)密封复合材料;表面粗糙度值未被改变。与其他老化过程相比,储水对显微硬度较小。与未密封的复合材料相比,密封材料呈现较低的粗糙度和微硬度值。结论:老化方法降低了许多复合材料的微硬度值,除了一些密封的复合材料,但没有改变材料的表面粗糙度。临床意义:材料表面质量的长期维护是提高审美修复化寿命的基础。以这种方式,表面密封剂的使用可能是使用基于树脂的材料修复程序的重要步骤。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号