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Fiber-reinforced dental composites in beam testing

机译:束测试中的纤维增强牙科复合材料

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Objectives. The purpose of this study was to systematically review current literature on in vitro tests of fiber-reinforced composite (FRC) beams, with regard to studies that followed criteria described in an International Standard. The reported reinforcing effects of various fibers on the flexural strength and elastic modulus of composite resin beams were analyzed. Sources. Original, peer reviewed papers, selected using Medline from 1950 to 2007, on in vitro testing of FRC beams in comparison to non-reinforced composite beams. Also information from conference abstracts (IADR) was included. Data. With the keywords (fiber or fibre) and (resin or composite) and (fixed partial denture or FPD), the literature search revealed 1427 titles. Using this strategy a broad view of the clinical and non-clinical literature on fiber-reinforced FPDs was obtained. Restricting to three-point bending tests, 7 articles and 1 abstract (out of 126) were included. Finally, the data of 363 composite beams were analyzed. The differences in mean flexural strength and/or modulus between reinforced and unreinforced beams were set out in a forest plot. Meta-regression analyses were performed (single and multiple regression models). Conclusions. Under specific conditions we have been able to show that fibers do reinforce resin composite beams. The flexural modulus not always seems to increase with polyethylene-reinforcement, even when fibers are located at the tensile side. Besides, fiber architecture (woven vs. unidirectional) seems to be more important than the type of fiber for flexural strength and flexural modulus.
机译:目标。这项研究的目的是针对遵循国际标准中描述的标准的研究,系统地回顾有关纤维增强复合材料(FRC)梁体外测试的最新文献。分析了报道的各种纤维对复合树脂梁抗弯强度和弹性模量的增强作用。资料来源。经过同行评审的原始论文(使用Medline从1950年至2007年选择)对FRC梁与非增强型复合梁进行了体外测试。还包括会议摘要(IADR)的信息。数据。通过关键词(纤维或纤维),(树脂或复合材料)和(固定局部义齿或FPD),文献检索显示1427个标题。使用这种策略,获得了纤维增强FPD的临床和非临床文献的广泛视野。仅限三点弯曲试验,其中包括7篇文章和1篇摘要(共126个)。最后,分析了363个组合梁的数据。在森林图中列出了加固梁和未加固梁之间的平均抗弯强度和/或模量的差异。进行了元回归分析(单个和多个回归模型)。结论。在特定条件下,我们已经能够证明纤维确实可以增强树脂复合梁。弯曲模量似乎并不总是随着聚乙烯增强而增加,即使当纤维位于拉伸侧时也是如此。此外,就抗弯强度和挠曲模量而言,纤维结构(编织与单向)似乎比纤维类型更为重要。

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