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The corrosion and nickel release behavior of laser surface-melted NiTi shape memory alloy in Hanks, solution

机译:表面处理中的激光表面熔化NiTi形状记忆合金的腐蚀和镍释放行为

摘要

A high-power laser was used to melt the surface of NiTi shape memory alloy. The rapid solidification rate of the laser-melted pool results in the formation of a surface layer consisting of refined and homogenized microstructure. Potentiodynamic anodic polarization tests and immersion tests were used to investigate the corrosion and nickel ion diffusion behavior of the laser surface-melted (LSM) and mechanically polished (MP) NiTi alloys in a physiological environment. The results showed that the corrosion resistance of the LSM NiTi was significantly increased, which was demonstrated by the increase in breakdown potential and decrease in icorr. The initial nickel ion release rate of the LSM NiTi in Hanks solution was also found to be one third of that of the MP samples, although the two rates became equal after the third day of the 15-day immersion tests. The outermost surface of all the samples studied was found to consist of TiO2, NiTi, and some other Ti-O compounds. However, the percentage compositions of Ti and TiO2 on the surface of the LSM samples were found to be higher than that of the MP one, which contributed to the enhancement of the corrosion resistance and the reduction of nickel ion release. The formation of the calcium phosphate layer was observed on the surface of the studied samples after immersion in Hanks solution for 15 days.
机译:使用大功率激光熔化NiTi形状记忆合金的表面。激光熔池的快速凝固速率导致形成由精细和均质的微观结构组成的表面层。电位动力学阳极极化测试和浸没测试用于研究在生理环境中激光表面熔化(LSM)和机械抛光(MP)的NiTi合金的腐蚀和镍离子扩散行为。结果表明,LSM NiTi的耐蚀性显着提高,这可以通过击穿电位的增加和icorr的降低来证明。还发现,LSM NiTi在Hanks溶液中的初始镍离子释放速率是MP样品的初始镍离子释放速率,尽管在15天浸没试验的第三天之后,这两个速率变得相等。发现所有研究样品的最外表面均由TiO2,NiTi和其他一些Ti-O化合物组成。然而,发现LSM样品表面上的Ti和TiO 2的百分比组成高于MP之一,这有助于提高耐蚀性和减少镍离子释放。在Hanks溶液中浸泡15天后,在研究样品的表面观察到磷酸钙层的形成。

著录项

  • 作者

    Cui ZD; Man HC; Yang XJ;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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