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首页> 外文期刊>Journal of dentistry >Corrosion behaviour of Ti-15Mo alloy for dental implant applications.
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Corrosion behaviour of Ti-15Mo alloy for dental implant applications.

机译:Ti-15Mo合金在牙科植入物中的腐蚀行为。

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The corrosion behaviour of Ti-15Mo alloy in 0.15M NaCl solution containing varying concentrations of fluoride ions (190, 570, 1140 and 9500 ppm) is evaluated using potentiodynamic polarization, electrochemical impedance spectroscopy (EIS) and chronoamperometric/current-time transient (CTT) studies to ascertain its suitability for dental implant applications. The study reveals that there is a strong dependence of the corrosion resistance of Ti-15Mo alloy on the concentration of fluoride ions in the electrolyte medium. Increase in fluoride ion concentration from 0 to 9500 ppm shifts the corrosion potential (E(corr)) from -275 to -457 mV vs. SCE, increases the corrosion current density (i(corr)) from 0.31 to 2.30 microA/cm(2), the passive current density (i(pass)) from 0.07 to 7.32 mA/cm(2) and the double-layer capacitance (C(dl)) from 9.63 x 10(-5) to 1.79 x 10(-4)F and reduces the charge transfer resistance (R(ct)) from 6.58 x 10(4) to 6.64 x 10(3)Omega cm(2). In spite of the active dissolution, the Ti-15Mo alloy exhibit passivity at anodic potentials at all concentrations of the fluoride ions studied. In dental implants since the exposure of the alloy will be limited only to its 'neck', the amount of Mo ions released from Ti-15Mo alloy is not likely to have an adverse and hence, in terms of biocompatibility this alloy seems to be acceptable for dental implant applications. The results of the study suggest that Ti-15Mo alloy can be a suitable alternative for dental implant applications.
机译:使用电位动力学极化,电化学阻抗谱(EIS)和计时电流/电流瞬态(CTT)评估了0.15M NaCl溶液中各种浓度的氟离子(190、570、1140和9500 ppm)的Ti-15Mo合金的腐蚀行为)进行研究,以确定其是否适合牙科植入物应用。研究表明,Ti-15Mo合金的耐蚀性与电解质介质中氟离子的浓度密切相关。氟离子浓度从0增加到9500 ppm,相对于SCE,腐蚀电位(E(corr))从-275变为-457 mV;腐蚀电流密度(i(corr))从0.31增大到2.30 microA / cm( 2),无源电流密度(i(pass))从0.07到7.32 mA / cm(2)和双层电容(C(dl))从9.63 x 10(-5)到1.79 x 10(-4) ),并将电荷转移电阻(R(ct))从6.58 x 10(4)减小到6.64 x 10(3)Ωcm(2)。尽管有活性溶解,但在所研究的所有氟离子浓度下,Ti-15Mo合金在阳极电势下仍具有钝性。在牙科植入物中,由于合金的暴露仅限于其“颈部”,因此从Ti-15Mo合金释放的Mo离子的量不太可能产生不利影响,因此,就生物相容性而言,该合金似乎是可以接受的用于牙种植体应用。研究结果表明,Ti-15Mo合金可以替代牙科植入物。

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