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A novel CAD/CAM resin composite block with high mechanical properties

机译:具有高机械性能的新型CAD / CAM树脂复合块

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Objective. To determine the mechanical properties of a newly-developed CAD/CAM resin composite block and compare with other resin composite blocks and a polymer-infiltrated ceramic block. Methods. Experimental composite block was formulated by our proprietary resin and filler technologies and cured via Hot Isostatic Pressing (HIP). Bar-shaped specimens (1 & times; 4 & times;12 & minus; 13 mm, n = 10) for flexural strength, flexural modulus and modulus of resilience were sectioned from block materials and measured in accordance to modified ISO-6872. Cylinder specimens for compressive strength (2 & times; 4 mm, n = 8) and for diametral tensile strength (6 & times; 3 mm, n = 8) were milled from the block materials and tested according to ASTM-D695 and ANSI/ADA-Specification #27, respectively. Block specimens (5 mm, n = 3) for Vickers hardness were polished and measured for five indentations on each specimen. The data was analyzed by one-way ANOVA and post-hoc Tukey tests (p = 0.05). Results. Experimental composite block showed higher or significantly higher flexural strength, flexural modulus, modulus of resilience, compressive strength, diametral tensile strength and Vickers hardness than the other commercially available block materials except Vita Enamic for flexural modulus and hardness and Cerasmart for modulus of resilience. Some positive correlations were observed among the different mechanical properties. Significance. New composite block exhibited higher mechanical properties as compared to commercially available composite block materials. Superior mechanical properties for resin composite block materials were obtained by composite and curing processing technologies. Resin composite blocks with higher mechanical properties are good options for the fabrication of CAD/CAM indirect restorations. (c) 2021 The Academy of Dental Materials. Published by Elsevier Inc. All rights reserved.
机译:客观的。确定新开发的CAD / CAM树脂复合块的机械性能,并与其他树脂复合块和聚合物渗透陶瓷块进行比较。方法。实验性复合块由我们的专有树脂和填充技术配制,并通过热等静压(臀部)固化。弯曲强度,弯曲模量和弹性模量的弯曲强度,弯曲模量和弹性模量的弯曲强度,弯曲模量和弹性模量,杆状试样(1和时; 4毫升; 13mm,n = 10)。用于压缩强度(2和时间; 4mm,n = 8)和径向拉伸强度(6和时间; 3mm,n = 8)的气缸试样从嵌段材料研磨并根据ASTM-D695和ANSI测试测试ADA规范#27分别。抛光维氏硬度的嵌段标本(5mm,n = 3),并在每个样本上测量五个凹口。通过单向ANOVA和HECT-HECT-HECT; = 0.05)分析数据。结果。实验复合块显示出弯曲强度,弯曲模量,弹性模量,抗压强度,抗压强度,除了用于弯曲模量和硬度和Cerasmart进行抗弹性模量之外的其他可商购的块材料。在不同的机械性能下观察到一些阳性相关性。意义。与市售复合块材料相比,新的复合块表现出更高的机械性能。通过复合材料和固化加工技术获得树脂复合块材料的优异机械性能。具有较高机械性能的树脂复合块是制造CAD / CAM间接修复的良好选择。 (c)2021牙科材料学院。由elsevier Inc.保留所有权利发布。

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