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纳米玻璃和多壁碳纳米管增强的三维打印义齿基托树脂的显微硬度、转化率和耐磨性评估

Evaluation of microhardness, degree of conversion, and abrasion resistance of nanoglass and multiwalled carbon nanotubes reinforced three-dimensionally printed denture base resins.

作者信息

Mohamed Pansai Ashraf, Ibrahim Yomna Mohamed, Hanno Kenda Ibrahim Hisham, Abdul-Monem Mohamed Mahmoud

机构信息

Department of Dental Biomaterials, Faculty of Dentistry, University of Alexandria, Alexandria, Egypt.

Department of Prosthodontics, Faculty of Dentistry, University of Alexandria, Alexandria, Egypt.

出版信息

J Prosthodont. 2024 Aug 13. doi: 10.1111/jopr.13924.

Abstract

PURPOSE

To assess the effect of nanoglass (NG) particles and multiwalled carbon nanotubes' (MWCNTs) addition on Vickers hardness (VH), degree of conversion (DC), and abrasion resistance of 3D-printed denture base resin.

MATERIALS AND METHODS

3D-printed denture base resin was reinforced using silanized NG and MWCNTs to obtain four groups: Control, 0.25 wt% NG reinforced resin, 0.25 wt% MWCNTs reinforced resin, and a combination group of 0.25 wt% of both fillers. All specimens (N = 176) were tested before and after thermal aging (600 cycles) for VH (n = 22), DC, and abrasion resistance (n = 22). Abrasion resistance specimens were subjected to 60,000 brushing strokes, and then assessed for surface roughness (Ra) and weight loss. Specimens were then scanned with a benchtop scanner before and after abrasion to produce a color map of topographical changes from superimposed images. Data were analyzed using ANOVA tests followed by Tukey post hoc test. Kruskal-Wallis test was used to compare percent change among groups, followed by Dunn post hoc test (α = 0.05).

RESULTS

The interaction between nanofiller content and thermal cycling displayed a significant effect on VH and DC. The 0.25% NG expressed the highest VH before aging but revealed the highest percent decrease after aging. Nanofiller content, thermal aging, and brushing displayed a significant interaction impact on the Ra values.

CONCLUSIONS

The addition of nanofillers resulted in an overall improvement in resin microhardness and abrasion resistance. The 0.25% MWCNTs group revealed the lowest Ra with the least percent change in VH and DC, while the combination one displayed the least change in weight.

摘要

目的

评估添加纳米玻璃(NG)颗粒和多壁碳纳米管(MWCNTs)对3D打印义齿基托树脂的维氏硬度(VH)、转化率(DC)和耐磨性的影响。

材料与方法

使用硅烷化的NG和MWCNTs增强3D打印义齿基托树脂,得到四组:对照组、0.25 wt% NG增强树脂、0.25 wt% MWCNTs增强树脂以及两种填料各0.25 wt%的组合组。对所有标本(N = 176)在热老化(600个循环)前后进行VH(n = 22)、DC和耐磨性(n = 22)测试。耐磨性标本经受60,000次刷牙冲程,然后评估表面粗糙度(Ra)和重量损失。然后在磨损前后用台式扫描仪对标本进行扫描,以生成叠加图像的地形变化彩色图。使用方差分析测试,随后进行Tukey事后检验分析数据。使用Kruskal-Wallis检验比较各组之间的百分比变化,随后进行Dunn事后检验(α = 0.05)。

结果

纳米填料含量与热循环之间的相互作用对VH和DC有显著影响。0.25% NG在老化前表现出最高的VH,但在老化后显示出最高的下降百分比。纳米填料含量、热老化和刷牙对Ra值有显著的相互作用影响。

结论

添加纳米填料总体上改善了树脂的显微硬度和耐磨性。0.25% MWCNTs组的Ra最低,VH和DC的变化百分比最小,而组合组的重量变化最小。

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