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纳米玻璃和多壁碳纳米管增强 3D 打印义齿基托树脂的双轴弯曲强度及其与 3D 打印和丙烯酸酯义齿牙的剪切结合强度。

Biaxial flexural strength of nanoglass and multiwalled carbon nanotubes reinforced 3D-printed denture base resins and their shear bond strength to 3D-printed and acrylic denture teeth.

机构信息

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

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

出版信息

Dent Mater. 2024 Oct;40(10):1557-1567. doi: 10.1016/j.dental.2024.07.026. Epub 2024 Jul 29.

Abstract

OBJECTIVE

Evaluation of biaxial flexural strength (BFS) of nanoglass (NG) and multiwalled carbon nanotubes (MWCNTs) reinforced 3D-printed denture base resins and their shear bond strength (SBS) to 3D-printed and acrylic denture teeth.

METHODS

Silanized NG and MWCNTs were added to 3D-printed denture base resin to obtain four groups: Control, 0.25 wt% NG, 0.25 wt% MWCNTs, and a combination group with 0.25 wt% of both fillers. All specimens were tested before and after 600 cycles of thermal aging. BFS (n = 88) was tested using disk-shaped specimens (12 ×2 mm) centralized on an O ring in a universal testing machine. Weibull analysis was conducted to assess predictability of failure. SBS (n = 176) was tested for acrylic and 3D-printed denture teeth attached to bar-shaped specimens in a universal testing machine followed by failure mode analysis using stereomicroscope. Two and three-way ANOVA tests followed by Tukey post hoc test were conducted for BFS and SBS. Kruskal-Wallis test compared percent change among groups with subsequent Dunn post hoc test with Bonferroni correction (α = 0.05).

RESULTS

BFS was affected significantly by filler content (P < 0.001) and thermal cycling (P < 0.001), with thermal cycling displaying the uppermost effect (Ƞp =0.551). A significant interaction between filler content, thermal cycling, and teeth type was displayed by SBS results (P < 0.001, F=10.340, Ƞp =0.162). The highest BFS values belonged to 0.25 % MWCNTs while the highest SBS to printed teeth was displayed by the combination.

SIGNIFICANCE

The combination group displayed higher BFS and SBS to printed teeth compared to control which allows 3D-printed materials to have a long-term clinical success.

摘要

目的

评估纳米玻璃(NG)和多壁碳纳米管(MWCNTs)增强 3D 打印义齿基托树脂的双轴弯曲强度(BFS)及其与 3D 打印和丙烯酸义齿牙的剪切结合强度(SBS)。

方法

硅烷化 NG 和 MWCNTs 添加到 3D 打印义齿基托树脂中,得到四组:对照组、0.25wt%NG、0.25wt%MWCNTs 和同时添加 0.25wt%两种填料的组合组。所有样本均在 600 次热老化循环前后进行测试。使用置于 O 型环中心的圆盘状试件(12×2mm)测试 BFS(n=88),在万能试验机上进行。采用威布尔分析评估失效的可预测性。将丙烯酸和 3D 打印义齿牙附着在万能试验机上的棒状试件上进行 SBS(n=176)测试,然后使用立体显微镜进行失效模式分析。对 BFS 和 SBS 进行二项和三项方差分析,然后进行 Tukey 事后检验。Kruskal-Wallis 检验比较各组之间的百分比变化,随后进行具有 Bonferroni 校正的 Dunn 事后检验(α=0.05)。

结果

BFS 显著受填料含量(P<0.001)和热循环(P<0.001)影响,热循环影响最大(Ƞp=0.551)。SBS 结果显示填料含量、热循环和牙齿类型之间存在显著的相互作用(P<0.001,F=10.340,Ƞp=0.162)。0.25wt%MWCNTs 的 BFS 值最高,而组合组显示出对打印牙齿的最高 SBS 值。

意义

与对照组相比,组合组显示出更高的 BFS 和对打印牙齿的 SBS,这使得 3D 打印材料具有长期的临床成功。

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