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不同镍钛正畸弓丝的超弹性比较及其热处理后的性能损失

Comparison of the superelasticity of different nickel-titanium orthodontic archwires and the loss of their properties by heat treatment.

作者信息

Bellini Humberto, Moyano Javier, Gil Javier, Puigdollers Andreu

机构信息

Department of Orthodontics, School of Dentistry, Universitat Internacional de Catalunya, Sant Cugat del Vallés, Barcelona, 08195, Spain.

出版信息

J Mater Sci Mater Med. 2016 Oct;27(10):158. doi: 10.1007/s10856-016-5767-5. Epub 2016 Sep 13.

Abstract

The aim of this work is to describe and compare mechanical properties of eight widely used nickel-titanium orthodontic wires under uniform testing conditions and to determine the influence of the heat treatments on the loss of the superelasticity. Ten archwires from two batches from eight different manufacturers were evaluated. A three-point bending test was performed, in accordance with ISO 15841:2006, on 80 round nickel-titanium archwire segments of 0.016 inch. To obtain a load-deflection curve, the centre of each segment was deflected to 3.1 mm and then unloaded until force became zero. On the unloading curve, deflection at the end of the plateau and forces delivered at that point, and at 3, 2, 1 and 0.5 mm of deflection, were recorded. Plateau slopes were calculated from 3 and from 2 mm of deflection. Data obtained were statistically analysed to determine inter-brand, intra-brand and inter-batch differences (P < 0.05). The results show that at 2 mm of deflection, maximum differential force exerted among brands [Nitinol SuperElastic (1.999N)-Sentalloy M (1.001 N)] was 0.998 N (102 gf). The Nitinol SuperElastic plateau slope (0.353 N/mm) was the only one that was statistically different from 2 mm of deflection, as compared with the other brand values (0.129-0.155 N/mm). Damon Optimal Force described the gentlest slope from 3 mm of deflection (0.230 N/mm) and one of the longest plateaus. Titanol and Orthonol showed the most notable intra-brand differences, whereas inter-batch variability was significant for Nitinol (Henry Schein), Euro Ni-Ti and Orthonol. Superelasticity degree and exerted forces differed significantly among brands. Superelasticity of Nitinol SuperElastic was not observed, while Damon Optimal Force and Proclinic Ni-Ti Superelástico (G&H) showed the most superelastic curves. Intra-brand and inter-batch differences were observed in some brands. In all cases, the heat treatment at 600 °C produces precipitation in the matrix. The precipitates are rich in titanium and this fact produce changes in the chemical composition of the matrix and the loss of the superelasticity. At 400 °C these precipitates are not produced and the forces delivered by the wires are very similar with wires untreated.

摘要

这项工作的目的是描述和比较在统一测试条件下八种广泛使用的镍钛正畸丝的力学性能,并确定热处理对超弹性丧失的影响。对来自八个不同制造商的两批共十根弓丝进行了评估。按照ISO 15841:2006对80段0.016英寸的圆形镍钛弓丝进行三点弯曲试验。为获得载荷-挠度曲线,将每段弓丝的中心挠度至3.1毫米,然后卸载直至力变为零。在卸载曲线上,记录平台末端的挠度以及该点以及挠度为3、2、1和0.5毫米时的力。从3毫米和2毫米挠度处计算平台斜率。对获得的数据进行统计分析以确定品牌间、品牌内和批次间的差异(P<0.05)。结果表明,在挠度为2毫米时,各品牌之间施加的最大差分力[Nitinol SuperElastic(1.999N)-Sentalloy M(1.001N)]为0.998N(102gf)。Nitinol SuperElastic的平台斜率(0.353N/mm)是与其他品牌值(0.129 - 0.155N/mm)相比,在2毫米挠度时唯一具有统计学差异的。Damon Optimal Force在3毫米挠度(0.230N/mm)时呈现最平缓的斜率和最长的平台之一。Titanol和Orthonol显示出最显著的品牌内差异,而Nitinol(Henry Schein)、Euro Ni-Ti和Orthonol的批次间变异性显著。各品牌之间的超弹性程度和施加的力有显著差异。未观察到Nitinol SuperElastic的超弹性,而Damon Optimal Force和Proclinic Ni-Ti Superelástico(G&H)显示出最具超弹性的曲线。在一些品牌中观察到了品牌内和批次间的差异。在所有情况下,600°C的热处理会在基体中产生沉淀。沉淀物富含钛,这一事实导致基体化学成分发生变化并丧失超弹性。在400°C时不会产生这些沉淀物,并且经热处理的弓丝施加的力与未处理的弓丝非常相似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bdad/5021743/187ed8e54ba1/10856_2016_5767_Fig1_HTML.jpg

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