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Surface hardness comparison of resins polymerized by argon xenon and conventional light sources

机译:氩氙和常规光源聚合树脂的表面硬度比较

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A great deal of discussion has taken place regarding how to properly polymerize light activated resins. Claims are made that effective testing can be made by using surface hardness tests on samples with various dental instruments. Although these tests would probably identify a material that had been very poorly polymerized it would not identify materials that were properly polymerized. The lack of consistent, reproducible forces and evaluation of the results make these test practically worthless. Surface hardness which is important clinically has value when combined with evaluation of the surface immediately adjacent to the light source and the surface adjacent to the tooth. Also immediate and 24 hour testing to allow for continued polymerization is helpful in determining how to achieve best results for our patients. A variety of new light sources have been introduced to dentistry with claims of faster and better polymerizations. The visible light units are also undergoing improvements to include built in meters to monitor light output. The purpose of this study was to evaluate the top and bottom surface hardness of a composite resin using the following light sources: argon, xenon, and two visible light sources.
机译:关于如何适当地聚合光活性树脂,已经发生了大量讨论。要求通过使用各种牙科仪器的样品对表面硬度测试进行有效测试。虽然这些测试可能识别它们非常差的材料,但不会识别适当聚合的材料。缺乏一致,可重复的力量和结果的评估使得这些测试实际上是毫无价值的。当与紧邻光源的表面的评估结合时,这是重要的表面硬度,其具有与齿紧邻光源的表面的评估。此外,24小时测试以允许持续的聚合允许,有助于确定如何为患者达到最佳效果。已经通过较快和更好的聚合来引入了各种新光源的牙科。可见光单元也经历改进,包括内置以仪表以监测光输出。本研究的目的是使用以下光源评估复合树脂的顶部和底表面硬度:氩气,氙和两个可见光源。

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