The Effect of Three Metal Oxide Nanocoatings on the Frictional Resistance of Superelastic Orthodontic Archwires: A Comprehensive In vitro Analysis.

Q3 Dentistry
Srinivasan Dilip, Krishnan Rajkumar
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引用次数: 0

Abstract

Aim and objective: To evaluate and compare the impact of nanocoatings made of oxides of Aluminum, Titanium, and Zirconium, on the frictional resistance on three types of superelastic orthodontics archwires namely; nickel titanium, copper nickel titanium and low hysteresis nickel titanium.

Materials and methods: There are120 archwire segments of equal dimensions were divided into four groups (n = 30) with 10 samples each of low hysteresis superelastic archwires; NiTi archwires and CuNiTi archwires. While group A were uncoated, other groups were nanocoated with group B: Aluminum oxide; group C: Titanium dioxide; group D: Zirconium oxide respectively. Upper premolar metal brackets MBT 0.022 slot were used for testing. The frictional properties of the archwires were measured using a Universal testing machine equipped with a custom-made jig. Statistical tests including analysis of variance and post hoctests were used for analysis.

Results: The least frictional resistance among the three types of archwires was seen with low hysteresis(L&H) NiTi wires coated with ZrO2 (3.1253 ± 0.45822 N) and the highest with uncoated CuNiTi archwires (7.1113 ± 1.29031 N). Among the nanocoatings, the least value was found for ZrO2 nanocoatings followed by TiO2, Al2O3 and highest with uncoated archwires across all three types of archwires.

Conclusion: Low hysteresisNiTi have the least frictional resistance compared to CuNiTi and NiTi archwires. The findings also suggest that all the three metal oxide nanocoatings reduce frictional resistance significantly, among which, ZrO2 nanocoatings were the most effective. This study underscores the potential efficacy of metal oxide nanocoatings in reducing archwire friction and, consequently, will improve orthodontic treatment efficiency and patient comfort. How to cite this article: Dilip S, Rajkumar K. The Effect of Three Metal Oxide Nanocoatings on the Frictional Resistance of Superelastic Orthodontic Archwires: A Comprehensive In vitro Analysis. J Contemp Dent Pract 2024;25(7):649-655.

三种金属氧化物纳米涂层对超弹性正畸弓丝摩擦阻力的影响:体外综合分析
目的和目标评估和比较由铝、钛和锆的氧化物制成的纳米涂层对三种超弹性正畸弓丝(即镍钛、铜镍钛和低滞后镍钛)摩擦阻力的影响:将 120 个尺寸相同的弓丝段分为四组(n = 30),每组有 10 个低滞后超弹性弓丝、镍钛弓丝和铜镍钛弓丝样品。A 组为无涂层,其他各组为纳米涂层:B 组:氧化铝;C 组:二氧化钛;D 组:铜镍钛:二氧化钛;D 组氧化锆。上前牙金属支架 MBT 0.022 槽用于测试。弓丝的摩擦性能是通过配备定制夹具的万能试验机进行测量的。统计检验包括方差分析和后验:在三种弓丝中,涂有 ZrO2 的低磁滞(L&H)镍钛丝的摩擦阻力最小(3.1253 ± 0.45822 N),而未涂 ZrO2 的铜镍钛弓丝的摩擦阻力最大(7.1113 ± 1.29031 N)。在纳米涂层中,ZrO2 纳米涂层的数值最小,其次是 TiO2 和 Al2O3,而在所有三种类型的弓丝中,无涂层弓丝的数值最高:结论:与铜镍钛和镍钛弓丝相比,低磁滞镍钛的摩擦阻力最小。研究结果还表明,所有三种金属氧化物纳米涂层都能显著降低摩擦阻力,其中 ZrO2 纳米涂层最为有效。这项研究强调了金属氧化物纳米涂层在减少弓丝摩擦方面的潜在功效,从而将提高正畸治疗的效率和患者的舒适度。本文引用方式三种金属氧化物纳米涂层对超弹性正畸弓丝摩擦阻力的影响:综合体外分析。J Contemp Dent Pract 2024;25(7):649-655.
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来源期刊
Journal of Contemporary Dental Practice
Journal of Contemporary Dental Practice Dentistry-Dentistry (all)
CiteScore
1.80
自引率
0.00%
发文量
174
期刊介绍: The Journal of Contemporary Dental Practice (JCDP), is a peer-reviewed, open access MEDLINE indexed journal. The journal’s full text is available online at http://www.thejcdp.com. The journal allows free access (open access) to its contents. Articles with clinical relevance will be given preference for publication. The Journal publishes original research papers, review articles, rare and novel case reports, and clinical techniques. Manuscripts are invited from all specialties of dentistry i.e., conservative dentistry and endodontics, dentofacial orthopedics and orthodontics, oral medicine and radiology, oral pathology, oral surgery, orodental diseases, pediatric dentistry, implantology, periodontics, clinical aspects of public health dentistry, and prosthodontics.
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