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首页> 外文期刊>Journal of Applied Oral Science >Effect of different light curing methods on mechanical and physical properties of resin-cements polymerized through ceramic discs
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Effect of different light curing methods on mechanical and physical properties of resin-cements polymerized through ceramic discs

机译:不同光固化方法对通过陶瓷圆盘聚合的树脂水泥的机械​​和物理性能的影响

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OBJECTIVE: The aim of this study was to compare the polimerization ability of three different light-curing units (quartz tungsten halogen, light-emitting diodes and plasma arc) and their exposure modes (high-intensity and soft-start) by determination of microhardness, water sorption and solubility, and diametral tensile strength of 5 dual-curing resin cements. Material and methods: A total of 720 disc-shaped samples (1 mm height and 5 mm diameter) were prepared from different dual-curing resin cements (Duolink, Nexus, Bifix-QM, Panavia F and RelyX Unicem). Photoactivation was performed by using quartz tungsten halogen (high-power and soft-up modes), light-emitting diode (standard and exponential modes) and plasma arc (normal and ramp-curing modes) curing units through ceramic discs. Then the samples (n=8/per group) were stored dry in the dark at 37°C for 24 h. The Vickers hardness test was performed on the resin cement layer with a microhardness tester (Shimadzu HMV). For sorption and solubility tests; the samples were stored in a desiccator at 37°C and weighed to a constant mass. The samples were weighed both before and after being immersed in deionized water for different periods of time (24 h and 7 days) and being desiccated. The diametral tensile strength of the samples was tested in a universal testing machine at a crosshead speed of 0.5 mm/min. Data were analyzed statistically by nonparametric Kruskal Wallis and Mann-Whitney U tests at 5% significance level. RESULTS: Resin cement and light-curing unit had significant effects (p<0.05) on microhardness, diametral tensile strength, water solubility and sorption. However, no significant differences (p>0.05) were obtained with different modes of LCUs. Conclusion: The study indicates that polymerization of resin cements with different light-curing units may result in various polymer structures, and consequently different mechanical and physical properties.
机译:目的:本研究的目的是通过确定显微硬度,比较三种不同光固化单元(石英钨卤素灯,发光二极管和等离子弧)的聚光能力及其曝光方式(高强度和软启动) 5种双固化树脂水泥的吸水率,吸水率和溶解度以及径向拉伸强度。材料和方法:用不同的双固化树脂胶粘剂(Duolink,Nexus,Bifix-QM,Panavia F和RelyX Unicem)制备了720个圆盘状样品(高度1 mm,直径5 mm)。通过使用石英钨卤素(高功率和软启动模式),发光二极管(标准和指数模式)和等离子弧(正常和斜坡固化模式)固化单元通过陶瓷盘进行光活化。然后将样品(每组n = 8)在黑暗中于37°C干燥保存24小时。用显微硬度测试仪(Shimadzu HMV)在树脂胶结层上进行维氏硬度测试。用于吸附和溶解度测试;将样品储存在37°C的干燥器中,称重至恒定质量。在将样品浸入去离子水中不同时间(24小时和7天)并进行干燥之前和之后,都要对样品进行称重。在万能试验机中以0.5mm / min的十字头速度测试样品的径向拉伸强度。通过非参数Kruskal Wallis和Mann-Whitney U检验对数据进行统计学分析,显着性水平为5%。结果:树脂水泥和光固化单元对显微硬度,径向拉伸强度,水溶性和吸附性有显着影响(p <0.05)。但是,使用不同模式的LCU并没有获得显着差异(p> 0.05)。结论:该研究表明,具有不同光固化单元的树脂水泥的聚合反应可能导致各种聚合物结构,进而导致不同的机械和物理性能。

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