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Effect of fiber volume fraction and length on the wear characteristics of glass fiber-reinforced dental composites

机译:纤维体积分数和长度对玻璃纤维增​​强牙科复合材料磨损特性的影响

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Objective. The main objective of this study was to evaluate the wear characteristics of fiber-reinforced dental composites. Variables under investigation include the fiber weight percent added to the matrix as well as fiber length. Methods. Dental specimens with glass fiber content of 2, 5.1, 5.7, and 7.6 wt% with fiber length of either 1.5 or 3 mm, were prepared by mixing an activated dental resin with commercial glass fibers. The specimens were then tested on a pin on disc setup, where the antagonist disc was manufactured of a similar fiber-reinforced composite with 5.1 wt% fiber and fiber length of 3 mm. The volume loss and coefficient of friction of the specimens was monitored periodically throughout testing. In addition, the wear surfaces of all specimens were evaluated using a scanning electron microscope. Results. The specimens with 5.7 wt% fibers and fiber length of 3 mm performed better in this study compared to all other fiber-reinforced specimens under all load conditions. In fact, this specimen had a comparable wear rate to a particle-filled dental composite. For the fiber lengths considered, increasing the length of the fibers increased the wear resistance of the specimen. The coefficient of friction showed a good correlation with the wear resistance of specimens. Significance. Fiber-reinforced composites demonstrated a high resistance to wear and may therefore be advantageous for dental applications, where high wear resistance is essential to functionality.
机译:目的。这项研究的主要目的是评估纤维增强牙科复合材料的磨损特性。研究中的变量包括添加到基质中的纤维重量百分比以及纤维长度。方法。通过将活化的牙科树脂与商用玻璃纤维混合,制备玻璃纤维含量为2、5.1、5.7和7.6 wt%,纤维长度为1.5或3 mm的牙科样品。然后在圆盘装置的销钉上测试样品,在该圆盘装置中,拮抗剂圆盘由类似的纤维增强复合材料制成,纤维含量为5.1 wt%,纤维长度为3 mm。在整个测试过程中,定期监测样品的体积损失和摩擦系数。另外,使用扫描电子显微镜评估所有样品的磨损表面。结果。在所有负载条件下,与所有其他纤维增强的样品相比,纤维含量为5.7 wt%,纤维长度为3 mm的样品性能更好。实际上,该样品的磨损率与颗粒填充的牙科复合材料相当。对于所考虑的纤维长度,增加纤维长度会增加样品的耐磨性。摩擦系数显示出与样品的耐磨性良好的相关性。意义。纤维增强复合材料显示出高耐磨性,因此对于牙科应用来说可能是有利的,在牙科应用中,高耐磨性对于功能至关重要。

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