Lombardo Luca, Carlucci Antonella, Palone Mario, Mollica Francesco, Siciliani Giuseppe
Postgraduate School of Orthodontics, University of Ferrara, Via Montebello 31, 44100, Ferrara, Italy.
Department of Engineering, University of Ferrara, Via Montebello 31, 44100, Ferrara, Italy.
Prog Orthod. 2016 Dec;17(1):27. doi: 10.1186/s40510-016-0140-2. Epub 2016 Sep 12.
The aim of this study is to investigate the relative stiffness of straight and mushroom lingual archwires of different diameters, cross sections and alloys, plotting their load/deflection graphs and using a modified three-point bending test.
Fujita's mushroom archwires and straight lingual archwires of different diameters, cross sections and alloys were derived by a virtual set-up of an equal malocclusion and were cut at their straight distal portion. These distal portions were tested using a modified three-point bending test by an Instron 4467 dynamometer and the forces, were exerted at 1-mm deflection and were compared on each resulting load/deflection curve by means of ANOVA (p < 0.05).
All upper lingual mushroom wires exerted significantly lower forces than the straight wire. Lower mushroom archwires were stiffer than their upper counterparts, which were longer and featured inset bends. In the lower arch, similar levels of forces were recorded for the two types of wire. Load-deflection curves were higher for the straight wires, and stiffness increased proportionally with their diameter.
The stiffness of an archwire is a function of its diameter, length and the alloy it is made from. In lower lingual wires, there is little difference in stiffness between mushroom and straight wires, but in upper wires, the straight version is considerably stiffer. The greater bearing effect exhibited by the straight wire in the working and finishing phases makes it less susceptible to bowing effect and therefore preferable for sliding mechanics during en masse retraction, particularly in the upper arch.
本研究旨在通过绘制不同直径、横截面和合金的直丝和蘑菇形舌弓丝的载荷/挠度图,并使用改良的三点弯曲试验,来研究它们的相对刚度。
通过虚拟建立均等错牙合模型得出不同直径、横截面和合金的藤田蘑菇形弓丝和直舌弓丝,并在其直的远中部分进行切割。使用Instron 4467测力计通过改良的三点弯曲试验对这些远中部分进行测试,在1毫米挠度时施加力,并通过方差分析(p < 0.05)在每条所得的载荷/挠度曲线上进行比较。
所有上颌舌侧蘑菇形弓丝施加的力均明显低于直丝。下颌蘑菇形弓丝比上颌的更硬,上颌的更长且有内收弯。在下颌弓中,两种类型的弓丝记录到的力水平相似。直丝的载荷-挠度曲线更高,并且刚度随其直径成比例增加。
弓丝的刚度是其直径、长度和所使用合金的函数。在下颌舌侧弓丝中,蘑菇形弓丝和直丝的刚度差异不大,但在上颌弓丝中,直丝版本的刚度明显更高。直丝在工作和精整阶段表现出的更大支撑作用使其不易受到弯曲效应的影响,因此在整体内收期间的滑动力学中更可取,特别是在上颌弓中。