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Physical properties and depth of cure of a new short fiber reinforced composite

机译:新型短纤维增强复合材料的物理性能和固化深度

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摘要

Objectives. To determine the physical properties and curing depth of a new short fiber composite intended for posterior large restorations (everX Posterior) in comparison to different commercial posterior composites (Alert, TetricEvoCeram Bulk Fill, Voco X-tra base, SDR, Venus Bulk Fill, SonicFill, Filtek Bulk Fill, Filtek Superme, and Filtek Z250). In addition, length of fiber fillers of composite XENIUS base compared to the previously introduced composite Alert has been measured. Materials and methods. The following properties were examined according to ISO standard 4049: flexural strength, flexural modulus, fracture toughness, polymerization shrinkage and depth of cure. The mean and standard deviation were determined and all results were statistically analyzed with analysis of variance ANOVA (a=0.05). Results. XENIUS base composite exhibited the highest fracture toughness (4.6 MPa m~(1/2)) and flexural strength (124.3 MPa) values and the lower shrinkage strain (0.17%) among the materials tested. Alert composite revealed the Highest flexural modulus value (9.9 GPa), which was not significantly different from XENIUS base composite (9.5 GPa). Depth of cure of XENIUS base (4.6 mm) was similar than those of bulk fill composites and higher than other hybrid composites. The length of fiber fillers in XENIUS base was longer (1.3-2 mm) than in Alert (20-60 μm). Conclusions. The new short fiber composite differed significantly in its physical properties compared to other materials tested. This suggests that the latter could be used in high-stress bearing areas.
机译:目标。与不同的商业后路复合材料(Alert,TetricEvoCeram散装填充,Voco X-tra基础,SDR,金星散装填充,SonicFill)相比,确定用于后部大型修复体(everX后部)的新型短纤维复合材料的物理性能和固化深度,Filtek散装填充,Filtek Superme和Filtek Z250)。此外,已经测量了复合材料XENIUS基料的纤维填料与之前引入的复合材料Alert相比的长度。材料和方法。根据ISO标准4049检查以下性质:抗弯强度,挠曲模量,断裂韧性,聚合收缩率和固化深度。确定平均值和标准偏差,并使用方差分析(a = 0.05)对所有结果进行统计学分析。结果。在测试的材料中,XENIUS基复合材料表现出最高的断裂韧性(4.6 MPa m〜(1/2))和弯曲强度(124.3 MPa)值以及较低的收缩应变(0.17%)。 Alert复合材料的最高挠曲模量值(9.9 GPa)与XENIUS基础复合材料(9.5 GPa)并无显着差异。 XENIUS基础的固化深度(4.6毫米)与散装填充复合材料的固化深度相似,并且高于其他杂化复合材料。 XENIUS底座中的纤维填料长度(1.3-2 mm)比Alert(20-60μm)长。结论。与其他测试材料相比,新型短纤维复合材料的物理性能差异显着。这表明后者可用于高应力轴承区域。

著录项

  • 来源
    《Dental materials》 |2013年第8期|835-841|共7页
  • 作者单位

    Department of Biomaterials Science and Turku Clinical Biomaterial Center-TCBC, Institute of Dentistry, University of Turku, Turku, Finland,Department of Restoratiue Dentistry and Periodontology, Institute of Dentistry, Libyan International Medical University, Benghazi, Libya;

    Research Development and Production Department, Stick Tech Ltd. - Member of GC Group, Turku, Finland;

    Department of Biomaterials Science and Turku Clinical Biomaterial Center-TCBC, Institute of Dentistry, University of Turku, Turku, Finland;

    Department of Biomaterials Science and Turku Clinical Biomaterial Center-TCBC, Institute of Dentistry, University of Turku, Turku, Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Short fiber composite; Physical properties; Depth of cure;

    机译:短纤维复合材料;物理性质;固化深度;
  • 入库时间 2022-08-18 03:47:03

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