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具有低应力滞后的超弹性镍钛正畸丝的刚度和摩擦阻力

Stiffness and frictional resistance of a superelastic nickel-titanium orthodontic wire with low-stress hysteresis.

作者信息

Liaw Yu-Cheng, Su Yu-Yu M, Lai Yu-Lin, Lee Shyh-Yuan

机构信息

Dental Department, Taipei Veterans General Hospital, Taipei, Taiwan.

出版信息

Am J Orthod Dentofacial Orthop. 2007 May;131(5):578.e12-8. doi: 10.1016/j.ajodo.2006.08.015.

Abstract

INTRODUCTION

Stress-induced martensite formation with stress hysteresis that changes the elasticity and stiffness of nickel-titanium (Ni-Ti) wire influences the sliding mechanics of archwire-guided tooth movement. This in-vitro study investigated the frictional behavior of an improved superelastic Ni-Ti wire with low-stress hysteresis.

METHODS

Improved superelastic Ni-Ti alloy wires (L & H Titan, Tomy International, Tokyo, Japan) with low-stress hysteresis were examined by using 3-point bending and frictional resistance tests with a universal test machine at a constant temperature of 35 degrees C, and compared with the former conventional austenitic-active superelastic Ni-Ti wires (Sentalloy, Tomy International). Wire stiffness levels were derived from differentiation of the polynomial regression of the unloading curves, and values for kinetic friction were measured at constant bending deflection distances of 0, 2, 3, and 4 mm, respectively.

RESULTS

Compared with conventional Sentalloy wires, the L & H Titan wire had a narrower stress hysteresis including a lower loading plateau and a higher unloading plateau. In addition, L & H Titan wires were less stiff than the Sentalloy wires during most unloading stages. Values of friction measured at deflections of 0, 2, and 3 mm were significantly (P <.05) increased in both types of wire. However, they showed a significant decrease in friction from 3 to 4 mm of deflection. L & H Titan wires had less friction than Sentalloy wires at all bending deflections (P <.05).

CONCLUSIONS

Stress-induced martensite formation significantly reduced the stiffness and thus could be beneficial to decrease the binding friction of superelastic Ni-Ti wires during sliding with large bending deflections. Austenitic-active alloy wires with low-stress hysteresis and lower stiffness and friction offer significant potential for further investigation.

摘要

引言

应力诱导马氏体形成及其应力滞后现象会改变镍钛(Ni-Ti)丝的弹性和刚度,进而影响弓丝引导牙齿移动的滑动机制。本体外研究探讨了一种具有低应力滞后的改良型超弹性Ni-Ti丝的摩擦行为。

方法

使用万能试验机在35摄氏度恒温下,通过三点弯曲和摩擦阻力试验对具有低应力滞后的改良型超弹性Ni-Ti合金丝(L&H Titan,日本东京东丽国际公司)进行检测,并与之前传统的奥氏体活性超弹性Ni-Ti丝(Sentalloy,日本东京东丽国际公司)进行比较。通过卸载曲线的多项式回归微分得出丝的刚度水平,并分别在0、2、3和4毫米的恒定弯曲挠度距离下测量动摩擦值。

结果

与传统的Sentalloy丝相比,L&H Titan丝的应力滞后更窄,包括较低的加载平台和较高的卸载平台。此外,在大多数卸载阶段,L&H Titan丝的刚度低于Sentalloy丝。在0、2和3毫米挠度下测量的两种丝的摩擦值均显著增加(P<.05)。然而,在3至4毫米挠度时,它们的摩擦显著降低。在所有弯曲挠度下,L&H Titan丝的摩擦力均低于Sentalloy丝(P<.05)。

结论

应力诱导马氏体形成显著降低了刚度,因此可能有利于降低超弹性Ni-Ti丝在大弯曲挠度滑动过程中的结合摩擦力。具有低应力滞后、较低刚度和摩擦力的奥氏体活性合金丝具有进一步研究的巨大潜力。

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