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Mg-3Zn-0.5Zr合金在含有不同離子的模擬生理環(huán)境中的降解機(jī)理
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天津理工大學(xué),天津理工大學(xué),天津理工大學(xué)

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國家自然科學(xué)基金項(xiàng)目(面上項(xiàng)目,重點(diǎn)項(xiàng)目,重大項(xiàng)目)


Degradation mechanism of the biomedical Mg-3Zn-0.5Zr alloy in a simulated physiological environment containing different an
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Tianjin University of Technology,Tianjin University of Technology,Tianjin University of Technology

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    摘要:

    采用電化學(xué)測試(極化曲線,開路電位,電化學(xué)阻抗譜)研究了Mg-3Zn-0.5Zr合金在四中侵蝕性離子(cl-,HPO42-,HCO3-和SO42-)相互作用下的降解行為。我們發(fā)現(xiàn)cl-會導(dǎo)致合金發(fā)生多孔狀點(diǎn)蝕,腐蝕坑在表面擴(kuò)展并加深。HPO42-能降低合金降解速率抑制點(diǎn)蝕。Mg-3Zn-0.5Zr合金在含有HCO3-離子的溶液中腐蝕行為是早期HCO3-離子大大加快了鎂合金的腐蝕降解速率,但由于能夠在劇烈腐蝕部位誘導(dǎo)鈍化,對合金點(diǎn)蝕的擴(kuò)展具有抑制作用。SO42-離子也能腐蝕合金,但在生理環(huán)境中濃度低,所以SO42-離子對合金腐蝕降解的行為加速不明顯。這些結(jié)果加深了我們對Mg-3Zn-0.5Zr合金在生理環(huán)境中降解機(jī)理的認(rèn)識。

    Abstract:

    The interaction and synergetic effects of the four corrosive anions (Cl-, HPO42-, HCO3-, and SO42-) on the degradation behavior of the Mg-3Zn-0.5Zr alloy were investigated using some electrochemical tests, such as potentiodynamic polarization, open circuit potential evolution, and electrochemical impedance spectroscopy (EIS). We found that chloride ions induce porous pitting corrosion on the alloy. The corrosion pits expanded on the surface and much deeper. Hydrogen phosphate ions inhibited the degradation rate and restrained the pitting corrosion. The degradation rate of the Mg-3Zn-0.5Zr alloy was accelerated at early time point during immersed in solutions containing hydrogen carbonate ions. However, precipitation of the magnesium carbonate resulted in passivation and the corrosion products totally inhibited the pitting corrosion. Sulfate ions could also corrode the Mg-3Zn-0.5Zr alloy, but for its low concentration in the physiological environment, the effects of sulfate on the degradation rate and corrosion morphology were limited. All of these results develop our knowledge on the degradation mechanism of Mg-3Zn-0.5Zr alloy in the physiological environment.

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孫士昭,畢衍澤,陳民芳. Mg-3Zn-0.5Zr合金在含有不同離子的模擬生理環(huán)境中的降解機(jī)理[J].稀有金屬材料與工程,2016,45(11):2827~2834.[sunshizhao, biyanze, chenminfang. Degradation mechanism of the biomedical Mg-3Zn-0.5Zr alloy in a simulated physiological environment containing different an[J]. Rare Metal Materials and Engineering,2016,45(11):2827~2834.]
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  • 收稿日期:2014-07-31
  • 最后修改日期:2014-11-20
  • 錄用日期:2015-02-06
  • 在線發(fā)布日期: 2016-12-08
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