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口腔内温度变化对镍钛丝力学行为的影响:一项体外研究。

The Effect of Intraoral Thermal Changes on the Mechanical Behavior of Nickel-Titanium Wires: An In-Vitro Study.

作者信息

Al-Horini Odayy S, Masaes Mariam Marwan, Baba Feras, Hajeer Mohammad Y, Almulla Soghyia Talib Ibrahim, Mousa Mudar Mohammad

机构信息

Department of Orthodontics, Faculty of Dentistry, University of Aleppo, Aleppo, SYR.

Department of Orthodontics, Faculty of Dentistry, University of Damascus, Damascus, SYR.

出版信息

Cureus. 2024 Oct 23;16(10):e72207. doi: 10.7759/cureus.72207. eCollection 2024 Oct.

Abstract

Background The continuous light force with a wide range of activation describes the excellent properties of nickel-titanium (NiTi) archwires. Shape memory is mainly affected by intraoral thermal changes. This study evaluated the effect of three different constant temperatures (i.e., 12°C, 37°C, and 50°C) on the unloading value of three different 0.016 × 0.022 NiTi archwires. Methodology Three types of 0.016 × 0.022-inch diameter NiTi archwires (American Orthodontics®, Sheboygan, Wisconsin, USA) were used. These were the superelastic type (NT3-SE®), the heat-activated type at 25°C (Thermal Ti-D®), and the thermally activated type at 35°C (Thermal Ti-Lite®). The unloading forces of the wires were evaluated using a classic three-point bending test (a universal testing machine: Testometric 350M®, Instron, Lincoln Close, Rochdale, England) under three different constant temperatures (12°C, 37°C, and 50°C). Results All types of wires showed thermal sensitivity; at higher temperatures, the unloading forces increased differentially between small and large deflections, while at lower temperatures, the residual strain increased for all wire types. The most affected type by the thermal changes was thermal Ti-Lite®, followed by thermal Ti-D®, and the superelastic type NT3-SE® showed a behavior similar to thermal wires. At the low temperature (12°C), all wire types showed an incomplete load/deflection curve, whereas no value was measured at unloading points 2, 1, and 0.5 mm. At the normal temperature (37°C), NT3-SE® type and thermal Ti-D® were similar in force level, while significant differences were noted between both previous types and Thermal Ti-Lite®. At the high temperature (50°C), all wire types showed a higher force level, while significant differences between the wire types were inconsistent. In contrast, increasing the temperature from 37°C to 50°C increased the force levels between 40% and 84% for NT3-SE®, between 44% and 64% for the thermal Ti-D®, and between 61% and 268% for the Thermal Ti-Lite®. When comparing the force levels between 12°C and 50°C at 3 mm, the force levels increased by 66% for NT3-SE®, 25% for Thermal Ti-D®, and 109% for thermal Ti-Lite®, while on comparing the forces between 12°C to 37°C, the forces increased between 15% and 95% for NT3-SE®, 20% and 88% for thermal Ti-D®, and 26% and 78% for thermal Ti-Lite®. The value of residual strain was greater at low temperatures and smaller at higher temperatures, while no significant differences were detected between 37°C and 50°C. Conclusions The temperature degree deeply affected the mechanical behavior of all test NiTi wires; the superelastic type behaved similarly to thermal wires. Increasing the temperature degree leads to more unloading forces and less residual strain.

摘要

背景 具有广泛激活范围的持续轻力描述了镍钛(NiTi)弓丝的优异性能。形状记忆主要受口腔内温度变化影响。本研究评估了三种不同恒定温度(即12°C、37°C和50°C)对三种不同的0.016×0.022 NiTi弓丝卸载值的影响。

方法 使用了三种类型的直径为0.016×0.022英寸的NiTi弓丝(美国正畸公司,美国威斯康星州希博伊根)。这些分别是超弹性型(NT3-SE®)、25°C热激活型(Thermal Ti-D®)和35°C热激活型(Thermal Ti-Lite®)。在三种不同恒定温度(12°C、37°C和50°C)下,使用经典三点弯曲试验(万能试验机:Testometric 350M®,英斯特朗公司,英国罗奇代尔林肯路)评估弓丝的卸载力。

结果 所有类型的弓丝均表现出热敏感性;在较高温度下,卸载力在小挠度和大挠度之间有不同程度增加,而在较低温度下,所有弓丝类型的残余应变均增加。受热变化影响最大的类型是Thermal Ti-Lite®,其次是Thermal Ti-D®,超弹性型NT3-SE®表现出与热激活弓丝类似的行为。在低温(12°C)时,所有弓丝类型均显示出不完整的载荷/挠度曲线,而在2、1和0.5 mm卸载点未测得数值。在常温(37°C)时,NT3-SE®型和Thermal Ti-D®在力水平上相似,而前两种类型与Thermal Ti-Lite®之间存在显著差异。在高温(50°C)时,所有弓丝类型均显示出较高的力水平,而弓丝类型之间的显著差异并不一致。相比之下,将温度从37°C升高到50°C时,NT3-SE®的力水平增加了40%至84%,Thermal Ti-D®增加了44%至64%,Thermal Ti-Lite®增加了61%至268%。在3 mm处比较12°C和50°C之间的力水平时,NT3-SE®的力水平增加了66%,Thermal Ti-D®增加了25%,Thermal Ti-Lite®增加了109%,而在比较12°C至37°C之间的力时,NT3-SE®的力增加了15%至95%,Thermal Ti-D®增加了20%至88%,Thermal Ti-Lite®增加了26%至78%。残余应变值在低温时较大,在高温时较小,而在37°C和50°C之间未检测到显著差异。

结论 温度程度对所有测试的NiTi弓丝的力学行为有深刻影响;超弹性型的行为与热激活弓丝类似。温度升高会导致更多的卸载力和更少的残余应变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a086/11498319/41d389c0eb7a/cureus-0016-00000072207-i01.jpg

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