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首页> 外文期刊>International Journal of Biomedical Science >Comparison of the Flexural Strength and Surface Roughness of Conventional Heat Cure and High Impact Denture Base Resins on Microadditions of Carbon Nanotubes- An In Vitro Study
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Comparison of the Flexural Strength and Surface Roughness of Conventional Heat Cure and High Impact Denture Base Resins on Microadditions of Carbon Nanotubes- An In Vitro Study

机译:常规热固化和高冲击义齿基树脂在碳纳米管微添加物上的抗弯强度和表面粗糙度的比较-体外研究

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Background and Objectives: Midline fracture of dentures and fractures due to sudden impact on denture bases, like accidental dropping, are common. The limitation that the strength of these materials displays sets a need for further improvement of the polymethylmethacrylate resin. Studies have demonstrated that carbon nanotubes possess outstanding mechanical properties of flexural and impact strengths. The present study evaluated and compared the flexural strength and surface roughness on reinforcing conventional heat cure denture base resins and high impact resins with carbon nanotubes. Method: A metal template of specific dimensions 65 mm × 10 mm × 3 mm was fabricated and flasked to obtain moulds. Monomer (methylmethacrylate) containing 1wt% carbon nanotubes was mixed with DPI and Lucitone polymers respectively and packed into the moulds to obtain 20 samples for each. Monomer without nanoparticles was used to fabricate 20 more samples for each resin. Following curing and deflasking, a total of 80 specimens were finished to required dimensions. Surface roughness of each specimen was evaluated using an optical profilometer. The flexural strengths were evaluated using a Universal Testing Machine. Results: The results showed that there was statistically significant difference among the flexural strength values of the groups with microadditions of CNTs when compared to the groups without microadditions. The surface roughness values, on comparison, showed no statistical significance. Interpretation and Conclusion: On comparison of the values obtained, the study concludes that flexural strength significantly improved on addition of carbon nanotubes. However, the comparison of surface roughness values suggested that incorporation of nanotubes does not increase the surface roughness of denture resins.
机译:背景与目的:假牙的中线骨折和由于对义齿基托的突然撞击(例如意外掉落)而导致的骨折是常见的。这些材料的强度显示的局限性要求进一步改进聚甲基丙烯酸甲酯树脂。研究表明,碳纳米管具有出色的弯曲强度和冲击强度机械性能。本研究评估并比较了用碳纳米管增强常规热固化义齿基托树脂和高抗冲树脂的弯曲强度和表面粗糙度。方法:制作一块特定尺寸为65 mm×10 mm×3 mm的金属模板,并进行瓶装成型以获得模具。将含有1wt%碳纳米管的单体(甲基丙烯酸甲酯)分别与DPI和Lucitone聚合物混合,并填充到模具中,每个样品获得20个样品。没有纳米颗粒的单体用于为每种树脂制造20个以上的样品。固化和剥落后,总共将80个样品加工成所需的尺寸。使用光学轮廓仪评估每个样品的表面粗糙度。使用通用测试机评估弯曲强度。结果:结果表明,与不添加微量碳纳米管的组相比,添加微量碳纳米管的组的抗弯强度值之间存在统计学差异。比较而言,表面粗糙度值无统计学意义。解释和结论:通过比较所获得的值,研究得出结论,添加碳纳米管可显着提高抗弯强度。但是,表面粗糙度值的比较表明,掺入纳米管不会增加义齿树脂的表面粗糙度。

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