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正畸治疗用钛托槽的评估:第一部分。被动构型。

Evaluation of titanium brackets for orthodontic treatment: part I. The passive configuration.

作者信息

Kusy R P, Whitley J Q, Ambrose W W, Newman J G

机构信息

Department of Orthodontics, School of Dentistry, University of North Carolina, Chapel Hill, NC, USA.

出版信息

Am J Orthod Dentofacial Orthop. 1998 Nov;114(5):558-72. doi: 10.1016/s0889-5406(98)70176-3.

Abstract

The static and kinetic frictional coefficients of commercially pure titanium brackets were evaluated in the passive configuration in the dry and wet states against stainless steel, nickel-titanium, and beta-titanium arch wires. For comparison, stainless steel brackets were evaluated under identical conditions. Titanium brackets were grayer in color and rougher in texture than the stainless steel brackets. Bracket slots were up to 0.002 inch greater than the nominally stated values. Remarkably, the static and kinetic frictional coefficients of the couples formed by titanium and stainless steel brackets were comparable. When evaluated against stainless steel and nickel-titanium arch wires in the dry state at 34 degrees C, the static coefficient averaged.12 and.20, respectively, independent of bracket alloy. When evaluated against stainless steel and nickel-titanium wires in the wet state at 34 degrees C using human saliva, the static coefficient averaged.15 and.20, respectively, independent of bracket alloy. Only the beta-titanium arch wires increased by about 15%, when tested in either the dry or the wet state against titanium versus stainless steel brackets. Noteworthy, too, was the decrease of both coefficients in the beta-titanium wire couples from their previously reported values. Analyses of electron spectroscopy for chemical analysis spectra and depth profiles show that these new brackets are titanium only in the bulk. Indeed the immediate surfaces are composed of, at least, 80 atomic percent (at.%) carbon and oxygen; whereas, the titanium that is present (>11 at.%) is mostly in the form of titanium dioxide. The presence of this quite thin passivating layer, which resides on top of an oxygen-hardened titanium substrate, reduces the galling and fretting that would normally be expected in such materials. Pending the outcome of future angulation tests, these frictional measurements show that titanium brackets are not only comparable to stainless steel brackets but also are more biocompatible with nickel having been eliminated from their constitution.

摘要

在干燥和湿润状态下,针对不锈钢、镍钛合金和β钛合金弓丝,对商业纯钛托槽的静摩擦系数和动摩擦系数进行了被动配置下的评估。为作比较,在相同条件下对不锈钢托槽进行了评估。钛托槽的颜色比不锈钢托槽更灰暗,质地更粗糙。托槽槽沟比标称值大0.002英寸。值得注意的是,由钛托槽和不锈钢托槽组成的配对的静摩擦系数和动摩擦系数相当。在34摄氏度干燥状态下,当与不锈钢和镍钛合金弓丝配对评估时,静摩擦系数平均分别为0.12和0.20,与托槽合金无关。在34摄氏度湿润状态下,使用人唾液与不锈钢和镍钛合金弓丝配对评估时,静摩擦系数平均分别为0.15和0.20,与托槽合金无关。仅β钛合金弓丝在干燥或湿润状态下与钛托槽配对测试时,相较于与不锈钢托槽配对,摩擦系数增加了约15%。同样值得注意的是,β钛合金弓丝配对的两种摩擦系数均低于先前报道的值。化学分析光谱和深度剖析的电子能谱分析表明,这些新型托槽仅主体部分为钛。实际上,其表面至少由80原子百分比(at.%)的碳和氧组成;而存在的钛(>11 at.%)大多以二氧化钛的形式存在。这种相当薄的钝化层存在于经氧硬化的钛基底之上,减少了这类材料中通常预期会出现的擦伤和微动磨损。在未来角度测试结果出来之前,这些摩擦测量结果表明,钛托槽不仅与不锈钢托槽相当,而且由于其成分中不含镍,与镍相比具有更高的生物相容性。

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