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Nanomechanical properties of dental resin-composites

机译:牙科树脂复合材料的纳米力学性能

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摘要

Objective. To determine by nanoindentation the hardness and elastic modulus of resin-composites, including a series with systematically varied filler loading, plus other representative materials that fall into the categories of flowable, bulk-fill and conventional nano-hybrid types. Methods. Ten dental resin-composites: three flowable, three bulk-fill and four conventional were investigated using nanoindentation. Disc specimens (15 mm × 2 mm) were prepared from each material using a metallic mold. Specimens were irradiated in the mold at top and bottom surfaces in multiple overlapping points (40 s each) with light curing unit at 650mW/cm~2. Specimens were then mounted in 3 cm diameter phenolic ring forms and embedded in a self-curing polystyrene resin. After grinding and polishing, specimens were stored in distilled water at 37 ℃ for 7 days. Specimens were investigated using an Agilent Technologies XP nanoindenter equipped with a Berkovich diamond tip (100 nm radius). Each specimen was loaded at one loading rate and three different unloading rates (at room temperature) with thirty indentations, per unloading rate. The maximum load applied by the nanoindenter to examine the specimens was 10 mN. Results. Dependent on the type of the resin-composite material, the mean values ranged from 0.73 GPa to 1.60 GPa for nanohardness and from 14.44GPa to 24.07 GPa for elastic modulus. There was a significant positive non-linear correlation between elastic modulus and nanohardness (γ~2 = 0.88). Nonlinear regression revealed a significant positive correlation (γ~2=0.62) between elastic moduli and filler loading and a non-significant correlation (γ~2 = 0.50) between nanohardness and filler loading of the studied materials. Varying the unloading rates showed no consistent effect on the elastic modulus and nanohardness of the studied materials. Significance. For a specific resin matrix, both elastic moduli and nanohardness correlated positively with filler loading. For the resin-composites investigated, the group-average elastic moduli and nanohardnesses for bulk-fill and flowable materials were lower than those for conventional nano-hybrid composites.
机译:目的。通过纳米压痕确定树脂复合材料的硬度和弹性模量,包括一系列填充剂系统变化的序列,以及其他具有代表性的材料,这些材料属于可流动,本体填充和常规纳米混合类型。方法。使用纳米压痕技术研究了十种牙科树脂复合材料:三种可流动,三种填充和四种常规。使用金属模具从每种材料制备圆盘样品(15 mm×2 mm)。使用光固化单元以650mW / cm〜2的频率在多个重叠点(每个40 s)在顶面和底面的模具中辐照样品。然后将样品以3厘米直径的酚环形式安装并嵌入自固化的聚苯乙烯树脂中。研磨和抛光后,将样品在37℃的蒸馏水中保存7天。使用配备有Berkovich金刚石尖端(半径100 nm)的Agilent Technologies XP纳米压头对样品进行了研究。每个样品以一种加载速率和三种不同的卸载速率(在室温下)加载,每个卸载速率带有三十个压痕。纳米压头检查样品所施加的最大载荷为10 mN。结果。根据树脂复合材料的类型,纳米硬度的平均值范围为0.73 GPa至1.60 GPa,弹性模量的平均值范围为14.44GPa至24.07 GPa。弹性模量与纳米硬度之间存在显着的正非线性相关(γ〜2 = 0.88)。非线性回归表明,弹性模量与填料载荷之间存在显着的正相关性(γ〜2 = 0.62),而纳米硬度与填料载荷之间存在显着的正相关性(γ〜2 = 0.50)。改变卸荷率对所研究材料的弹性模量和纳米硬度没有一致的影响。意义。对于特定的树脂基体,弹性模量和纳米硬度均与填料含量呈正相关。对于所研究的树脂复合材料,本体填充和可流动材料的组平均弹性模量和纳米硬度低于常规纳米混合复合材料的平均模量和纳米硬度。

著录项

  • 来源
    《Dental materials》 |2012年第12期|1292-1300|共9页
  • 作者单位

    School of Dentistry and Photon Science Institute, University of Manchester, UK,Biomaterials Science Research Group, School of Dentistry, University of Manchester, Higher Cambridge Street, Manchester M15 6FH, UK;

    School of Engineering, University of Liverpool, L69 3GH, UK;

    School of Dentistry and Photon Science Institute, University of Manchester, UK;

    School of Dentistry and Photon Science Institute, University of Manchester, UK,Institute of Materials Science and Technology, Friedrich Schiller University, Jena, Germany;

  • 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

    nanoindentation; resin-composites; elastic modulus; nanohardness; filler loading;

    机译:纳米压痕树脂复合材料;弹性模量纳米硬度填料装载;

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