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Comparison of chemical properties and Ni release of stainless steel and nickel titanium wires

机译:不锈钢和镍钛电线化学性质和Ni释放的比较

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Objective: This study aimed to determine the composition and corrosion resistance of stainless steel and nickel titanium (NiTi) archwires and to compare Ni released from simulated standard fixed orthodontic appliances ligated with stainless steel and NiTi wires in artificial saliva at pH 5.14 and pH 6.69. in 4 weeks at 37°C. Materials and Method: Two commercial rectangular wires, 0.016 x 0.022" in size were studied, one Ormco stainless steel wire and another Ormco nickel titanium wire. Their composition was analyzed by an energy disporsive X-ray spectrometer (ESC) and their corrosion resistance was evaluated by a potentiodynamic polarization technique. For Ni release, the twenty-eight simulated fixed appliance sample sets were used, each corresponding to one half-maxillary arch. The samples were divided in 2 groups (14 sets per group). The first one was ligated to Ormco stainless steel archwires and the other one to Ormco NiTi archwires with elastomeric ligatures. Half sets of each group were immersed in 50 ml artificial saliva at pH 5.14 and the other half were immersed at pH 6.69. Ni release was quantified using flame atomic absorption spectrophotometry. Statistical analysis of variance (t-test) was determined on days 1, 4, 7, 9, 14, 21 and 28 comparing the amount of Ni released between groups. Results: Stainless steel wire was composed of Ni, Cr, Si, Mn and Fe while the nickel titanium wire was composed of Ti, Ni and Cr. NiTi wire has more percentage of Ni and therefore has less corrosion resistance than stainless steel wire. For Ni release, stainless steel and NiTi continuously increased at the time intervals for both pH levels. For group one, stainless steel wire had more Ni release at pH 5.14 and for the other group, NiTi wire had more Ni-release at pH 6.69. At 4 weeks, the Ni release of one half-maxillary arch was 1.383 ppm (1383 μg/l) at pH 5.14 and 1.079 ppm (1078 μg/l) at pH 6.69 for stainless steel wire while it was 1.221 ppm (1221 μg/l) at pH 5.14 and 1.267 ppm (1267μg/l) at pH 6.69 for NiTi wire. No significant difference was found in the amount of Ni release from stainless steel and NiTi wires at pH 5.14 and pH 6.69 in the different time intervals except on day 1 wherein the stainless steel archwire was significantly different (p<0.05) at pH 5.14 and pH 6.69. Conclusions: The NiTi wire had more Ni contain and less corrosion resistance than stainless steel wire. Stainless steel had more Ni release at pH 5.14 than pH 6.69 but NiTi had greater Ni release at pH 6.69 than pH 5.14.
机译:目的:本研究旨在确定不锈钢和镍钛(NITI)弓丝的组成和耐腐蚀性,并在pH 5.14和pH6.69的人工唾液中释放的模拟标准固定的正畸电器释放的Ni。在37°C的4周内。研究了材料和方法:研究了两个商用矩形线,尺寸为0.016×0.022英寸,一根Ormco不锈钢线和另一个Ormco镍钛丝。通过能量分散X射线光谱仪(ESC)分析它们的组合物,它们的耐腐蚀性是通过电位动力学偏振技术评估。对于NI释放,使用了二十八模拟的固定设备样品组,每个模拟固定设备样品组对应于一个半上颌拱。样品分为2组(每组14套)。第一个是用弹性韧带连接到Ormco不锈钢弓丝网和另一个到Ormco Niti archwires。将半组每组浸入pH5.14时在50ml人造唾液中浸入50ml人造唾液中,并将另一半浸入pH6.69时。使用火焰原子定量Ni释放量吸收分光光度法。在第1,4,7,9,14,21,21,21和28天测定差异(t检验)的统计分析,比较组之间释放的Ni的量。结果:不锈钢钢丝由Ni,Cr,Si,Mn和Fe组成,而镍钛丝由Ti,Ni和Cr组成。 NITI线具有更多的Ni百分比,因此具有比不锈钢线更少的耐腐蚀性。对于Ni释放,不锈钢和NITI在pH水平的时间间隔内连续增加。对于第一个组,不锈钢线在pH5.14处具有更多Ni释放,对于其他组,Niti Wire在pH6.69下具有更多的Ni-释放。在4周时,在pH 5.14和pH 6.69的pH 5.69下,1个半上颌弓的Ni释放为1.383ppm(1383μg/ l),在pH 6.69,对于不锈钢导线,为1.221ppm(1221μg/ l)在pH 5.14和1.267ppm(1267μg/ L)的pH 6.69,用于Niti线。除了第1天的不同时间间隔中,在pH 5.14和pH 6.69的Ni释放的Ni释放量中没有发现显着差异。除了第1天,在第54天,不锈钢弓丝的不锈钢弓丝显着不同(P <0.05)和pH值6.69。结论:NITI线具有更多的Ni含有比不锈钢线更少的耐腐蚀性。不锈钢在pH5.14处具有更多的Ni释放,而不是pH 6.69,但NITI在pH6.69下的Ni释放比pH5.14更大。

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