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Comparison of slot deformation in stainless steel and ceramic brackets during torque: A finite element analysis

机译:扭矩作用下不锈钢和陶瓷支架中缝隙变形的比较:有限元分析

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摘要

AbstractIntroduction: Torque in orthodontics is vital in final positioning of the teeth during fixed appliance therapy. Torqueing of archwires is a significant factor in transferring the applied forces to the bracket which might cause deformation of the slot. Any deformation in the bracket slot can vary the torque prescription and thus can affect the tooth position.Aim: To evaluate and compare the deformation of stainless steel (SS) and ceramic bracket slots during torque, using finite element analysis.Materials and methods: A maxillary right central incisor bracket (0.022 x 0.028 inch) dimensions were measured using a profile projector, and a finite element (FE) model was constructed. Bracket materials considered were stainless steel (SS) and ceramic. An SS rectangular archwire (0.019 x 0.025 inch) with angles of twist ranging from 5° to 40° was theoretically converted into torque. The bracket slot deformation was obtained at the top, middle and bottom locations using FE analysis.Results: There is a uniform increase in deformation in the bracket slot walls from torque of 9.7 to 77.62 Nmm except that there is a 100 percent increase in deformation when the torque changed from 38.81 to 48.51 Nmm. The top location in the gingival slot wall showed maximum deformation compared with middle and bottom slot positions in both the materials. The deformation of SS bracket slot was more than the ceramic bracket slot.Conclusion: This study showed that the bracket slot walls of both SS and ceramic brackets are subjected to deformation by application of torque and the maximum deformation was in the upper part of the bracket slot.
机译:摘要简介:正畸中的扭矩对于固定矫治器治疗期间牙齿的最终定位至关重要。弓丝的扭矩是将施加的力传递到支架上的重要因素,这可能会导致插槽变形。支架槽中的任何变形都会改变扭矩规定,从而影响牙齿位置。目的:使用有限元分析评估和比较不锈钢(SS)和陶瓷支架槽在扭矩期间的变形。材料和方法:A使用轮廓投影仪测量上颌右中切牙支架(0.022 x 0.028英寸)的尺寸,并构建一个有限元(FE)模型。所考虑的支架材料为不锈钢(SS)和陶瓷。理论上将扭角为5°至40°的SS矩形弓丝(0.019 x 0.025英寸)转换为扭矩。结果通过使用有限元分析在顶部,中部和底部位置获得了支架槽变形。结果:支架槽壁的变形从9.7到77.62 Nmm的扭矩均匀增加,但当变形时增加了100%。扭矩从38.81 Nmm变为48.51 Nmm。与两种材料的中部和底部狭缝位置相比,牙龈狭槽壁的顶部位置显示出最大的变形。结论:本研究表明,不锈钢和陶瓷托槽的托槽壁均受扭矩作用而发生变形,最大变形发生在托槽的上部。插槽。

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