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The effect of the curing time and the distance from the light source on hardness of Methacrylate and Silorane resin-based dental composite materials

机译:固化时间和距光源的距离对甲基丙烯酸酯和硅烷树脂基牙科复合材料硬度的影响

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Purpose: The aim of the work was to test hardness of composite dental materials with different resins in relation to different light-curing parameters. Design/methodology/approach: The following article provides and insight into factors influencing hardness of composite materials. Standardized samples made of Herculite XRV based on a methacrylate resin and Filtek Silorane based on silorane resin were tested using two types of Light Curing Units (LCUs) – halogen and LED. The distance of light source and time of curing differed between samples. Findings: Filtek Silorane composite compared to Herculite XRV composite guarantees higher hardness, regardless of the used LCU type. Using LED LCU compared to halogen LCU allows to obtain higher hardness both for Herculite XRV and Filtek Silorane composite. The lower the distance of light source the higher the hardness of composite material. Research limitations/implications: Further studies will provide additional information on other properties such as compressive strength, wear resistance and light transmission. Practical implications: This article presents important comparison between older and newer composite technology. It provides practical information on polymerization methods. Originality/value: Article shows broad spectrum of different curing methods, important to the composite use in dentistry.
机译:目的:这项工作的目的是测试与不同光固化参数相关的具有不同树脂的复合牙科材料的硬度。设计/方法/方法:以下文章提供并深入了解了影响复合材料硬度的因素。使用两种类型的光固化单元(LCU)分别测试了由基于甲基丙烯酸酯树脂的Herculite XRV和基于硅氧烷树脂的Filtek Silorane制成的标准样品-卤素灯和LED。样品之间的光源距离和固化时间不同。结果:与使用的LCU类型无关,Filtek Silorane复合材料与Herculite XRV复合材料相比可确保更高的硬度。与卤素灯LCU相比,使用LED LCU可使Herculite XRV和Filtek Silorane复合材料获得更高的硬度。光源的距离越短,复合材料的硬度就越高。研究的局限性/意义:进一步的研究将提供有关其他特性的其他信息,例如抗压强度,耐磨性和透光性。实际意义:本文介绍了旧的和较新的复合技术之间的重要比较。它提供了有关聚合方法的实用信息。原创性/价值:文章显示了各种不同的固化方法,这对牙科用复合材料很重要。

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