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在林格氏生理溶液中激光处理 Ti-6Al-4V 表面的电化学和机械行为。

Electrochemical and mechanical behavior of laser processed Ti-6Al-4V surface in Ringer's physiological solution.

机构信息

Council of Scientific & Industrial Research-National Metallurgical Laboratory (CSIR-NML), Jamshedpur, 831007, India.

出版信息

J Mater Sci Mater Med. 2011 Aug;22(8):1787-96. doi: 10.1007/s10856-011-4362-z. Epub 2011 Jun 10.

Abstract

Laser surface modification of Ti-6Al-4V with an existing calcium phosphate coating has been conducted to enhance the surface properties. The electrochemical and mechanical behaviors of calcium phosphate deposited on a Ti-6Al-4V surface and remelted using a Nd:YAG laser at varying laser power densities (25-50 W/mm(2)) have been studied and the results are presented. The electrochemical properties of the modified surfaces in Ringer's physiological solution were evaluated by employing both potentiodynamic polarization and electrochemical impedance spectroscopy (EIS) methods. The potentiodynamic polarizations showed an increase in the passive current density of Ti-6Al-4V after laser modification at power densities up to 35 W/mm(2), after which it exhibited a decrease. A reduction in the passive current density (by more than an order) was observed with an increase in the laser power density from 25 to 50 W/mm(2). EIS studies at the open circuit potential (OCP) and in the passive region at 1.19 V showed that the polarization resistance increased from 8.274 × 10(3) to 4.38 × 10(5) Ω cm(2) with increasing laser power densities. However, the magnitudes remain lower than that of the untreated Ti-6Al-4V at OCP. The average hardness and modulus of the laser treated Ti-6Al-4V, evaluated by the nanoindentation method, were determined to be 5.4-6.5 GPa (with scatter <±0.976 GPa) and 124-155 GPa (with scatter <±13 GPa) respectively. The corresponding hardness and modulus of untreated Ti-6Al-4V were ~4.1 (±0.62) and ~148 (±7) GPa respectively. Laser processing at power densities >35 W/mm(2) enhanced the surface properties (as passive current density is reduced) so that the materials may be suitable for the biomedical applications.

摘要

已经对具有现有磷酸钙涂层的 Ti-6Al-4V 进行了激光表面改性,以增强表面性能。研究了在不同激光功率密度(25-50 W/mm(2))下,将磷酸钙沉积在 Ti-6Al-4V 表面上并使用 Nd:YAG 激光重熔的电化学和机械性能,并给出了结果。在林格氏生理溶液中,通过采用动电位极化和电化学阻抗谱(EIS)方法评估了改性表面的电化学性能。动电位极化表明,在激光功率密度高达 35 W/mm(2)时,Ti-6Al-4V 的钝化电流密度增加,之后则下降。当激光功率密度从 25 W/mm(2)增加到 50 W/mm(2)时,观察到钝化电流密度(降低了一个数量级以上)降低。在开路电位(OCP)和 1.19 V 的钝化区进行的 EIS 研究表明,极化电阻从 8.274×10(3)到 4.38×10(5) Ω·cm(2)随着激光功率密度的增加而增加。然而,这些数值仍然低于 OCP 下未经处理的 Ti-6Al-4V。通过纳米压痕法评估的激光处理 Ti-6Al-4V 的平均硬度和模量分别为 5.4-6.5 GPa(散度<±0.976 GPa)和 124-155 GPa(散度<±13 GPa)。未经处理的 Ti-6Al-4V 的相应硬度和模量分别约为 4.1(±0.62)和 148(±7)GPa。激光处理功率密度>35 W/mm(2)提高了表面性能(由于钝化电流密度降低),使得这些材料可能适用于生物医学应用。

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