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老化过程和预激活对镍钛封闭线圈弹簧力学性能的影响。

The effects of aging process and preactivation on mechanical properties of nickel-titanium closed coil springs.

作者信息

Alavi Shiva, Haerian Alireza

机构信息

Dental Materials Research Center and Department of Orthodontics, School of Dentistry, Isfahan University of Medical Sciences, Isfahan, Iran.

Department of Orthodontics and Dental Students Research Center, School of Dentistry, Isfahan University of Medical Sciences, Isfahan, Iran.

出版信息

Dent Res J (Isfahan). 2015 May-Jun;12(3):231-4.

Abstract

BACKGROUND

The most favorable feature of nickel-titanium (Ni-Ti) alloys in orthodontics is producing constant forces in a wide deformation range. Ni-Ti closed coils produce compressive strength and can be used for several purposes such as space closure. The aim of this study was to evaluate the effects of the aging process (temperature changes and prolonged strain) on Ni-Ti closed coils and to assess the effects of preactivation on forces generated by these coils.

MATERIALS AND METHODS

A total of 60 Ni-Ti closed coils (G&H Wire Co., Indiana, USA) were divided into four groups (n = 15). Two groups were kept in room temperature and two were incubated in 37°C in normal saline for 45 days. All the samples were extended to 30% of their original length. One group of the incubated coils and one group of room temperature coils were preactivated the same amount of 30%. The incubated groups also received 1000 thermocycles on days 22 and 45. The unloading forces were measured by a universal testing machine on days 0, 22 and 45. The data were analyzed using SPSS. Significance was set at 0.05.

RESULTS

The unloading forces of the Ni-Ti closed coils was not affected by prolonged heat and moisture either in preactivated groups (P = 0.8) or the nonpreactivated groups (P = 0.6). Furthermore, preactivation had no significant effect on the unloading forces of Ni-Ti closed coils (P = 0.7).

CONCLUSION

Within the limitations of this study, both aging process and preactivation do not affect on mechanical properties of nickel-titanium closed coil springs. Preactivation had no effect on the forces generated by Ni-Ti closed coils.

摘要

背景

镍钛(Ni-Ti)合金在正畸领域最有利的特性是在较宽的变形范围内产生恒定的力。Ni-Ti闭合弹簧圈可产生抗压强度,可用于多种用途,如间隙关闭。本研究的目的是评估时效过程(温度变化和长时间应变)对Ni-Ti闭合弹簧圈的影响,并评估预激活对这些弹簧圈产生的力的影响。

材料与方法

总共60个Ni-Ti闭合弹簧圈(美国印第安纳州的G&H Wire公司)被分为四组(每组n = 15)。两组保存在室温下,两组在37°C的生理盐水中孵育45天。所有样本均延长至其原始长度的30%。一组孵育后的弹簧圈和一组室温下的弹簧圈以相同的30%进行预激活。孵育组在第22天和第45天还接受了1000次热循环。在第0、22和45天用万能试验机测量卸载力。数据使用SPSS进行分析。显著性设定为0.05。

结果

无论是预激活组(P = 0.8)还是未预激活组(P = 0.6),Ni-Ti闭合弹簧圈的卸载力均不受长时间加热和潮湿的影响。此外,预激活对Ni-Ti闭合弹簧圈的卸载力没有显著影响(P = 0.7)。

结论

在本研究的局限性内,时效过程和预激活均不影响镍钛闭合弹簧圈的力学性能。预激活对Ni-Ti闭合弹簧圈产生的力没有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e330/4432605/b5b83ab3094d/DRJ-12-231-g001.jpg

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