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Static and kinetic frictional forces of silica?insert ceramic brackets with coated archwires in artificial saliva

机译:人造唾液中带有涂层弓丝的二氧化硅陶瓷支架的静摩擦力和动摩擦力

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Background: During sliding mechanics, the frictional force (FF) is an important counterforce to orthodontic tooth movement. The purpose of this in vitro study was to investigate the static and kinetic FFs of S silica?insert ceramic (SIC) brackets with Teflon?coated (TC) and conventional S stainless steel (SS) archwires. Materials and Methods: The target group of this study included 80 maxillary canine 0.022 inch slot SIC brackets. Forty SS brackets were used as the control. TC and conventional uncoated SS archwires of different dimensions (0.016, 0.018, 0.016 × 0.022, and 0.018 × 0.025 inch) were examined. All tests were carried out under artificial saliva injected condition. Scanning Electron Micrographs were prepared for two samples of coated and uncoated archwires. Analysis of variance and Tukey post hoc tests were used for statistical purposes (level of significance P < 0.05). Results: SIC brackets showed significantly lower levels of FFs than SS brackets. TC archwires had greater frictional values than conventional uncoated ones. They also exhibited an unusual behavior of increasing kinetic FFs with time. Indentation and delamination of coating were obvious under scanning electron microscopy observations. Conclusion: From the standpoint of friction, SIC brackets may serve well, even better than SS brackets, in sliding mechanics. The coating layer of the archwires may delaminate and lost, causing an impediment to tooth movement. Key Words: Artificial, Friction, orthodontic bracket, saliva
机译:背景:在滑动力学过程中,摩擦力(FF)是正畸牙齿运动的重要反作用力。这项体外研究的目的是研究带有特氟龙涂层(TC)和传统的S不锈钢(SS)弓丝的S二氧化硅插入式陶瓷(SIC)支架的静态和动态FF。材料和方法:本研究的目标人群包括80个上颌犬0.022英寸槽SIC支架。使用40个SS支架作为对照。检查了TC和不同尺寸(0.016、0.018、0.016×0.022和0.018×0.025英寸)的常规未涂层SS弓丝。所有测试均在人工唾液注射条件下进行。为涂覆的和未涂覆的弓丝的两个样品准备了扫描电子显微照片。方差分析和Tukey事后检验用于统计目的(显着性水平P <0.05)。结果:SIC括号显示的FFs水平明显低于SS括号。 TC弓丝的摩擦值比传统的无涂层弓丝大。它们还表现出随时间增加动力学FF的异常行为。在扫描电子显微镜观察下,涂层的压痕和分层是明显的。结论:从摩擦的角度来看,SIC支架在滑动力学中可能会很好地发挥作用,甚至比SS支架更好。弓丝的涂层可能分层并脱落,从而阻碍牙齿运动。关键词:人工,摩擦,正畸托槽,唾液

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