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正畸托槽与弓丝之间摩擦力的比较研究。

A comparative study of frictional resistances between orthodontic bracket and arch wire.

作者信息

Frank C A, Nikolai R J

出版信息

Am J Orthod. 1980 Dec;78(6):593-609. doi: 10.1016/0002-9416(80)90199-2.

Abstract

Practitioners are aware of the presence of friction in those orthodontic appliances where relative motion between bracket system and arch wire occurs in ordinary deactivation processes. Numerous comments on friction have appeared in the published dental/orthodontic literature, but little controlled research into the problem has been reported. The objective of this investigation was to evaluate and compare frictional forces generated in an experimental stimulation of the canine-retraction procedure on a continuous arch wire. Six independent variables were chosen for study: arch wire size and shape, bracket width and style, second-order angulation between bracket and passive arch wire, arch wire material, ligature force and type of ligation, and interbracket distances. Frictional resistance was found to be nonlinearly dependent upon bracket/arch wire angulation. With small and generally nonbinding angulations, bracket width and ligature force were the dominant influences on level of friction. As angulations were increased, producing binding between wire and bracket, this variable itself became the controlling parameter. Wire shape and arch wire stiffness in bending, a function of three of the variables studied, apparently exerted substantial influence on frictional-force magnitude at relatively high angulations. The reduced data, together with structural computations, were employed to deduce a minimum frictional-resistance combination of edgewise appliance components.

摘要

从业者们意识到,在普通去激活过程中,当托槽系统与弓丝之间发生相对运动时,正畸矫治器中会存在摩擦力。牙科/正畸学文献中已出现了许多关于摩擦力的评论,但针对该问题的对照研究报道较少。本研究的目的是评估和比较在连续弓丝上对犬牙后移过程进行实验性刺激时产生的摩擦力。选择了六个自变量进行研究:弓丝尺寸和形状、托槽宽度和类型、托槽与被动弓丝之间的二阶角度、弓丝材料、结扎力和结扎类型以及托槽间距。发现摩擦阻力与托槽/弓丝角度呈非线性相关。在角度较小且通常无约束力时,托槽宽度和结扎力是摩擦力水平的主要影响因素。随着角度增加,导致弓丝与托槽之间产生约束力,该变量本身就成为控制参数。在所研究的三个变量的作用下,弓丝形状和弓丝弯曲刚度显然在相对较大角度时对摩擦力大小产生了实质性影响。简化后的数据与结构计算结果一起,用于推导方丝弓矫治器各部件的最小摩擦阻力组合。

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