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The difference nanocomposite hardness level using LED photoactivation based on curing period variations

机译:基于固化周期变化的使用LED光活化的纳米复合材料硬度水平差异

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Polimerizatian is the critical stage to determine the quality of composites resin, this involves isolated monomer carbon double bonds being converted to an extended network of single bonds. Physical and mechanical properties of composites are influenced by the level of conversion attained during polymerization. An adequate light intensity and light curing time are important to obtain the degree of polymerization. The objective of this study is to evaluate the difference of the hardness nanocomposites which activated by LED LCU based on the variation of curing times. This study is a true experimental research. The samples were made from nanocomposites material with cylinder form of 4 mm in depth, 6 mm in diameter. This samples divided into 3 groups of curing times. Group, I was cured for 20's curing time as a control due to manufactory recommended; Group II was cured for 30's, and Group III was cured for 40's and the hardness (Rebound hardness tester) was determined using Rebound scale (RS) and converted by Mohs scale (MS). There was a very significant level of hardness rate from each group using ANOVA test. The result of the study concludes that there were the differences on the nanocomposites hardness level cured under different curing times 20, 30 and 40 sec. The longer of curing times, the higher level of hardness.
机译:Polimerizatian是确定复合树脂质量的关键阶段,这涉及将孤立的单体碳双键转换为单键的扩展网络。复合材料的物理和机械性能受聚合过程中达到的转化水平的影响。足够的光强度和光固化时间对于获得聚合度很重要。这项研究的目的是根据固化时间的变化来评估由LED LCU活化的纳米硬度复合材料的差异。这项研究是真正的实验研究。样品由纳米复合材料制成,圆柱体的深度为4毫米,直径为6毫米。该样品分为3组固化时间。小组,我推荐20秒钟的固化时间作为对照,以推荐的方式进行;将组II固化30秒钟,将组III固化40秒钟,并使用回弹标度(RS)确定硬度(回弹硬度测试仪),并通过莫氏标度(MS)进行换算。使用ANOVA测试,每个组的硬度率水平都非常高。研究结果表明,在不同的固化时间20、30和40秒下,固化的纳米复合材料的硬度水平存在差异。固化时间越长,硬度越高。

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