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首页> 外文期刊>Journal of Materials Research and Technology >Effect of exposure time on corrosion behavior of zinc-alloy in simulated body fluid solution: Electrochemical and surface investigation
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Effect of exposure time on corrosion behavior of zinc-alloy in simulated body fluid solution: Electrochemical and surface investigation

机译:暴露时间对模拟体液液中锌合金腐蚀行为的影响:电化学和表面调查

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摘要

Zn alloy biocompatible implant materials have wide clinical application but its susceptibility to corrosion in the physiological environment due to increased exposure time is a major constraint. Consequently, diverse electrochemical responses have been investigated to understand the corrosion mechanism at the Zn alloy interface in different immersion times up to 168?h. A self-protective layer of Zn(OH)2was evidenced over the surface of Zn alloy at higher exposure time in simulated body fluid (SBF) solution. The morphology and chemical composition of the zinc surface has been studied by Field emission scanning electron microscopy (FESEM), X-RAY diffraction (XRD), annulated transmission refraction (ATR), and X-RAY Photoelectron Spectroscopy (XPS). The results indicated that the Zn alloy predominantly forms zinc oxide or hydroxide and zinc phosphate compound as primary corrosion products at the interface which is confirmed from the elemental ratio (Zn/O, Zn/Cl and Zn/P 1:1, 1:2, 2:3 respectively). Additionally, FESEM results confirmed the selective formation of nano structured Zn(OH)2which is responsible for the protectiveness of zinc specimen at higher exposure period. When Zn alloy was immersed in SBF solution, the corrosion rate was found to be 0.156–0.0976?mmy?1, which proves the sustainability of Zn alloy for biomedical applications and provides an improved degradation mechanism of Zn alloy in SBF solution.
机译:Zn合金生物相容性植入物材料具有广泛的临床应用,但由于暴露时间增加,其对生理环境中的腐蚀的敏感性是一个主要限制。因此,已经研究了不同的电化学反应,以了解Zn合金界面的腐蚀机制在不同的浸入时间内高达168Ωh。在模拟体液(SBF)溶液中的较高曝光时间下,在Zn合金的表面上证明了Zn(OH)2的自保护层。通过现场发射扫描电子显微镜(FESEM),X射线衍射(XRD),包射传输折射(ATR)和X射线光电子体光谱(XPS)研究了锌表面的形态和化学组成。结果表明,锌合金主要在界面处主要形成氧化锌或氢氧化物,磷酸锌化合物,以元素比(Zn / O,Zn / Cl和Zn / P 1:1,1:2 ,2:3分别)。另外,FESEM结果证实了纳米结构Zn(OH)2的选择性形成,其负责锌样本在较高曝光期间的保护性。当锌合金浸入SBF溶液中时,发现腐蚀速率为0.156-0.0976?1,这证明了Zn合金用于生物医学应用的可持续性,并在SBF溶液中提供了改进的Zn合金的降解机制。

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