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首页> 外文期刊>Journal of materials science >Microstructure and corrosion properties of as sub-rapid solidification Mg-Zn-Y-Nd alloy in dynamic simulated body fluid for vascular stent application
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Microstructure and corrosion properties of as sub-rapid solidification Mg-Zn-Y-Nd alloy in dynamic simulated body fluid for vascular stent application

机译:亚快速凝固Mg-Zn-Y-Nd合金在血管支架应用动态模拟体液中的组织和腐蚀性能

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摘要

Magnesium alloy stent has been employed in animal and clinical experiment in recent years. It has been verified to be biocompatible and degradable due to corrosion after being implanted into blood vessel. Mg-Y-Gd-Nd alloy is usually used to construct an absorbable magnesium alloy stent. However, the corrosion resistant of as cast Mg-Y-Gd-Nd alloy is poor relatively and the control of corrosion rate is difficult. Aiming at the requirement of endovascular stent in clinic, a new biomedical Mg-Zn-Y-Nd alloy with low Zn and Y content (Zn/Y atom ratio 6) was designed, which exists quasicrystals to improve its corrosion resistance. Additionally, sub-rapid solidification processing was applied for preparation of corrosion-resisting Mg-Zn-Y-Nd and Mg-Y-Gd-Nd alloys. Compared with the as cast sample, the corrosion behavior of alloys in dynamic simulated body fluid (SBF) (the speed of body fluid: 16 ml/800 ml min~(-1)) was investigated. The results show that as sub-rapid solidification Mg-Zn-Y-Nd alloy has the better corrosion resistance in dynamic SBF due to grain refinement and fine dispersion distribution of the quasicrystals and intermetallic compounds in α-Mg matrix. In the as cast sample, both Mg-Zn-Y-Nd and Mg-Y-Gd-Nd alloys exhibit poor corrosion resistance. Mg-Zn-Y-Nd alloy by sub-rapid solidification processing provides excellent corrosion resistance in dynamic SBF, which open a new window for biomedical materials design, especially for vascular stent application.
机译:近年来,镁合金支架已用于动物和临床实验中。已被证实具有生物相容性,并且在植入血管后由于腐蚀而可降解。 Mg-Y-Gd-Nd合金通常用于构造可吸收的镁合金支架。但是,铸态的Mg-Y-Gd-Nd合金的耐腐蚀性相对较差,并且难以控制腐蚀速率。针对临床对血管内支架的要求,设计了一种新型的Zn,Y含量低(Zn / Y原子比为6)的Mg-Zn-Y-Nd生物医学合金,该合金存在准晶体以提高其耐蚀性。此外,亚快速凝固工艺被用于制备耐腐蚀的Mg-Zn-Y-Nd和Mg-Y-Gd-Nd合金。与铸态样品相比,研究了合金在动态模拟体液(SBF)中的腐蚀行为(体液速度:16 ml / 800 ml min〜(-1))。结果表明,由于亚细化凝固,Mg-Zn-Y-Nd合金在动态SBF中具有更好的耐蚀性,这归因于晶粒细化以及准晶体和金属间化合物在α-Mg基体中的精细分散分布。在铸态样品中,Mg-Zn-Y-Nd和Mg-Y-Gd-Nd合金均显示出较差的耐腐蚀性。通过亚快速凝固处理的Mg-Zn-Y-Nd合金在动态SBF中具有出色的耐腐蚀性,这为生物医学材料设计,尤其是血管支架应用打开了新的窗口。

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  • 来源
    《Journal of materials science》 |2010年第7期|P.2001-2008|共8页
  • 作者单位

    School of Materials Science and Engineering, Zhengzhou University, Zhengzhou 45002, Henan, People's Republic of China;

    rnSchool of Materials Science and Engineering, Zhengzhou University, Zhengzhou 45002, Henan, People's Republic of China;

    rnSchool of Materials Science and Engineering, Zhengzhou University, Zhengzhou 45002, Henan, People's Republic of China;

    rnSchool of Materials Science and Engineering, Zhengzhou University, Zhengzhou 45002, Henan, People's Republic of China;

    rnSchool of Materials Science and Engineering, Zhengzhou University, Zhengzhou 45002, Henan, People's Republic of China;

    rnSchool of Materials Science and Engineering, Zhengzhou University, Zhengzhou 45002, Henan, People's Republic of China;

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