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Depth of cure and hardness of indirect composite materials polymerized with two metal halide laboratory curing units

机译:用两个金属卤化物实验室固化单元聚合的间接复合材料的固化深度和硬度

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The purpose of this study was to evaluate the depth of cure and Knoop hardness of indirect composite materials polymerized with different laboratory curing units. Five composite materials designed for fixed restoration veneer (Artglass, Ceramage, Epricord, Prossimo, and Solidex) were filled into a cylindrical mold and then light-exposed by using the respective proprietary laboratory curing unit or two metal halide curing units (Hyper LII and Twinkle X). Depth of cure was determined by a scraping technique, as described in ISO 4049. Composites also underwent Knoop hardness testing after immersion in water. The results ( n = 5) were analyzed with the Kruskal-Wallis test and Dunn’s multiple comparison test. For three materials (Prossimo, Artglass, and Epricord), depth of cure after polymerization with the Twinkle X unit was greater than that after polymerization with the respective proprietary units. For the Ceramage and Artglass materials, the Twinkle X unit resulted in the highest Knoop hardness number (KHN), whereas, for the Prossimo material, the Hyper LII unit resulted in the highest KHN. The metal halide units were effective in enhancing the post-polymerization properties of specific composite materials while reducing exposure time. (J Oral Sci 54, 121-125, 2012)
机译:这项研究的目的是评估采用不同实验室固化单元聚合的间接复合材料的固化深度和努氏硬度。将用于固定修复贴面的五种复合材料(Artglass,Ceramage,Epricord,Prossimo和Solidex)填充到圆柱模具中,然后使用各自专有的实验室固化单元或两个金属卤化物固化单元(Hyper LII和Twinkle)进行曝光。 X)。如ISO 4049所述,通过刮削技术确定固化深度。复合材料在浸入水中后也要进行努氏硬度测试。结果(n = 5)用Kruskal-Wallis检验和Dunn多重比较检验进行了分析。对于三种材料(Prossimo,Artglass和Epricord),使用Twinkle X单元聚合后的固化深度大于使用相应专有单元聚合后的固化深度。对于Ceramage和Artglass材料,Twinkle X单元的努氏硬度值(KHN)最高,而对于Prossimo材料,Hyper LII单元的KHN值最高。金属卤化物单元可有效增强特定复合材料的后聚合性能,同时减少暴露时间。 (J Oral Sci 54,121-125,2012)

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