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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Effect of the hydrophilic nanofiller loading on the mechanical properties and the microtensile bond strength of an ethanol-based one-bottle dentin adhesive.
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Effect of the hydrophilic nanofiller loading on the mechanical properties and the microtensile bond strength of an ethanol-based one-bottle dentin adhesive.

机译:亲水性纳米填料负载量对乙醇基单瓶牙本质粘合剂的机械性能和微拉伸粘合强度的影响。

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摘要

This study evaluated the hypothesis that if hydrophilic nanofillers were dispersed evenly within the adhesive layer under moist conditions, adding them to a one-bottle dentin adhesive might improve the mechanical properties of the adhesive layer, and accordingly increase the bond strength. The flexural strength (FS), the degree of conversion (DC), and the microtensile bond strength (MTBS) to the dentin of four experimental ethanol-based one-bottle dentin adhesives containing 0, 0.5, 1.0, and 3.0 wt % of 12-nm hydrophilic fumed silica were evaluated, and the distribution of the nanofillers were compared using transmission electron microscopy (TEM). Although the nanofiller content did not affect the DC, the FS tended to increase with increasing nanofiller content. The MTBS appeared to increase when up to 1.0 wt % of the nanofillers were added, but they were statistically not significant. However, when 3.0 wt % of the nanofillers were added, the MTBS decreased significantly comparing to the adhesive containing 0.5 wt % nanofillers (p < 0.05). The TEM image suggested that if the nanofillers within the adhesive were 3.0 wt % and applied to a wet dentin surface, they aggregated easily into large clusters and would decrease the MTBS.
机译:这项研究评估了以下假设:如果亲水性纳米填料在潮湿条件下均匀地分散在胶粘剂层中,则将其添加到一瓶牙本质胶中可能会改善胶粘剂层的机械性能,并因此提高粘结强度。四种含0、0.5、1.0和3.0 wt%12的乙醇基单瓶牙本质粘合剂的实验性抗弯强度(FS),转化度(DC)和与牙本质的微拉伸粘合强度(MTBS) -nm亲水性气相二氧化硅进行了评估,并使用透射电子显微镜(TEM)比较了纳米填料的分布。尽管纳米填料的含量不影响DC,但FS倾向于随着纳米填料含量的增加而增加。当添加至多1.0重量%的纳米填料时,MTBS似乎增加,但是统计上它们并不显着。然而,当添加3.0重量%的纳米填料时,与含有0.5重量%的纳米填料的粘合剂相比,MTBS显着降低(p <0.05)。 TEM图像表明,如果粘合剂中的纳米填料含量为3.0 wt%并应用于湿润的牙本质表面,它们很容易聚集成大团簇,并且会降低MTBS。

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