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Study of behavior alloy Ti and 316L in to simulated body fluid by electrochemical techniques

机译:用电化学技术研究行为合金Ti和316L与模拟体液的研究

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摘要

In this work, Ti-316L stainless steel was produced, and its electrochemical behavior was characterized. Ti-steel alloys were produced using an induction furnace, by mixing commercial Ti and 316L stainless steel. X-ray diffraction analyses showed the presence of both the materials, Ti and 316L, in the samples produced. The elemental composition of the materials was determined by optical emission spectroscopy and energy-dispersive spectroscopy, which showed similar quantities of both the elements. Both commercial 316L stainless steel and Ti–steel were studied in simulated biological fluid for imitate a like composition of body blood plasma. Electrochemical experiments conducted at 37?°C indicated the stable passive polarization behavior of the Ti-steel alloy. Furthermore, the electrochemical behavior of the 316L stainless steel was also analyzed for comparison purposes. Corrosion velocities were determined using the Tafel method and corrosion resistances were obtained using the electrochemical impedance spectroscopy. The Ti-steel exhibited better protection capacity, compared with the commercial 316L steel. The corrosion velocity and the passive current density of the Ti–steel alloy were lower than those exhibited by the 316L stainless steel.
机译:在这项工作中,产生Ti-316L不锈钢,其电化学行为的特征在于。通过混合商用Ti和316L不锈钢使用感应炉生产Ti-钢合金。 X射线衍射分析显示出在产生的样品中存在材料,Ti和316L。通过光发射光谱和能量分散光谱法测定材料的元素组成,其显示出类似的两种元件。在模拟生物液中研究了商业316L不锈钢和Ti-钢,用于模拟体血浆的样品组成。在37Ω℃下进行的电化学实验表明了Ti-钢合金的稳定无源极化行为。此外,还分析了316L不锈钢的电化学行为以进行比较目的。使用Tafel方法测定腐蚀速度,使用电化学阻抗光谱获得耐腐蚀性。与商业316L钢相比,Ti-Steel表现出更好的保护能力。 Ti-钢合金的腐蚀速度和无源电流密度低于316L不锈钢所示的腐蚀速度。

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