He Song, Chen Zhou-yan, Yang Si-wei, Huang Yue
Department of Orthodontics, Stomatology Hospital of Luzhou Medical College. Luzhou 646000, Sichuan Province, China. E-mail:
Department of Orthodontics, Stomatology Hospital of Luzhou Medical College. Luzhou 646000, Sichuan Province, China.
Shanghai Kou Qiang Yi Xue. 2015 Dec;24(6):660-6.
The purpose of this study was to investigate the mechanical property of lingual and labial archwires by using finite element method.
A three-dimensional finite element model including three maxillary left incisors of the 0.022-inch Dentaurum Discovery labial and Ormco 7th Generation lingual brackets was constructed and threaded with corresponding labial and lingual archwires. Then the arch wire's mechanical property in different materials, sizes and space between brackets were analyzed.
The load deflection curve of lingual archwire was similar to labial archwire at the same distance of brackets and mainly determined by the characters of archwire. The effects of the type of wire alloy were greater than dimension but less than the coordination of the two: the load value of lingual archwire increased when archwire size increased (the load value of 0.019 × 0.025 inch stainless steel wire was about 1.46 times as bigger as 0.017 × 0.025 inch one),but this change was less than the material of archwire brought(the load value of stainless steel was about 2.73 times as bigger as the same size of titanium-nickel wire),and was less than the coordination of the two(the load value of 0.019 × 0.025 inch stainless steel wire was about 3.5 times as bigger as 0.017 × 0.025 inch titanium-nickel wire),the force of the lingual side was larger than the labial side at the same conditions, when the distance of brackets increased ,both of them decreased gradually(the force loading on 10 mm, 12 mm and 14 mm was about 2.42, 1.59 and 1.33 times as bigger as on 16 mm , respectively), faster in the early, later became stabilized.
Lingual archwire should be in smaller diameter, lower stiffness than labial archwire. In choosing arch wire clinically, the material of arch wire should be considered first, followed by size and coordination of the two, meanwhile the distance of brackets should also be considered.
本研究旨在运用有限元方法探究舌侧和唇侧弓丝的力学性能。
构建一个包含0.022英寸Dentaurum Discovery唇侧托槽和Ormco第7代舌侧托槽的上颌左侧三颗切牙的三维有限元模型,并穿入相应的唇侧和舌侧弓丝。然后分析不同材料、尺寸以及托槽间距下弓丝的力学性能。
在相同托槽间距下,舌侧弓丝的载荷-挠度曲线与唇侧弓丝相似,且主要由弓丝特性决定。弓丝合金类型的影响大于尺寸,但小于两者的协同作用:当弓丝尺寸增大时,舌侧弓丝的载荷值增加(0.019×0.025英寸不锈钢丝的载荷值约为0.017×0.025英寸钢丝的1.46倍),但这种变化小于弓丝材料带来的变化(不锈钢丝的载荷值约为相同尺寸镍钛丝的2.73倍),且小于两者的协同作用(0.019×0.025英寸不锈钢丝的载荷值约为0.017×0.025英寸镍钛丝的3.5倍);在相同条件下,舌侧的力大于唇侧;当托槽间距增加时,两者均逐渐减小(在10毫米、12毫米和14毫米处加载的力分别约为16毫米处的2.