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用于正畸的日本镍钛合金丝的超弹性特性。

The super-elastic property of the Japanese NiTi alloy wire for use in orthodontics.

作者信息

Miura F, Mogi M, Ohura Y, Hamanaka H

出版信息

Am J Orthod Dentofacial Orthop. 1986 Jul;90(1):1-10. doi: 10.1016/0889-5406(86)90021-1.

Abstract

A new Japanese nickel-titanium (NiTi) alloy wire was developed by the Furukawa Electric Co., Ltd. of Japan. This wire was subjected to uniaxial tensile testing and a specially designed three-point bending test to determine the wire stiffness, and to evaluate spring-back, shape memory, and super-elasticity. The Japanese NiTi wire exhibited an unusual property termed "super-elasticity," which no other orthodontic wire has shown. This phenomenon was researched thoroughly. The wire delivered a constant force over an extended portion of the deactivation range. Among all the wires compared, Japanese NiTi alloy wire was the least likely to undergo permanent deformation during activation. The new alloy exhibited a specific stress-strain curve unlike those of the other tested materials. Stress remained nearly constant despite the strain change within a specific range. This unique feature is the manifestation of so-called super-elasticity. Heat treatment enabled the load magnitude at which super-elasticity is reflected to be influenced and controlled by both temperature and time. A unique and useful process was also developed so that an arch wire delivering various magnitudes of force for a given activation could be fabricated from the wire of the same diameter. The clinical application of wires of this new alloy should be more likely to generate a physiologic tooth movement because of the relatively constant force delivered for a long period of time during the deactivation of the wire. Japanese NiTi alloy should be considered an important material addition to clinical orthodontic metallurgy.

摘要

日本古河电气株式会社研发出一种新型镍钛(NiTi)合金丝。对该合金丝进行了单轴拉伸试验以及一项专门设计的三点弯曲试验,以测定其丝刚度,并评估回弹性、形状记忆和超弹性。这种日本NiTi丝展现出一种名为“超弹性”的非凡特性,这是其他正畸丝所未表现出的。对这一现象进行了深入研究。在去激活范围的延长部分,该丝能提供恒定的力。在所有被比较的丝材中,日本NiTi合金丝在激活过程中最不容易发生永久变形。这种新型合金呈现出一条与其他测试材料不同的特定应力 - 应变曲线。在特定应变范围内,尽管应变发生变化,但应力几乎保持恒定。这一独特特性就是所谓超弹性的体现。热处理能够使反映超弹性的负载大小受到温度和时间的影响与控制。还研发出一种独特且实用的工艺,使得可以用相同直径的丝制造出在给定激活情况下能提供不同大小力的弓丝。由于在丝的去激活过程中能长时间提供相对恒定的力,这种新型合金丝的临床应用应该更有可能产生生理性牙齿移动。日本NiTi合金应被视为临床正畸金属材料领域的一项重要新增材料。

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