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离子注入TiNi形状记忆合金和钴基合金的血液相容性及腐蚀行为研究

Study on hemocompatibility and corrosion behavior of ion implanted TiNi shape memory alloy and Co-based alloys.

作者信息

Liang Chenghao, Huang Naibao

机构信息

Electromechanics and Materials Engineering College, Dalian Maritime University, Dalian 116026, China.

出版信息

J Biomed Mater Res A. 2007 Oct;83(1):235-40. doi: 10.1002/jbm.a.31459.

Abstract

Biomedical TiNi shape memory alloy and Co-based alloys were ion implanted, and corrosion resistance and hemocompatibility of these had been investigated with electrochemical method, dynamic clotting time, and hemolysis rate tests. The results indicated that the electrochemical stability and anodic polarization behavior of the materials were improved significantly after ion implantation. When TiNi, Co-based alloys were implanted Mo + C and Ti + C, respectively, the corrosion potentials were enhanced more than 200 mV, passive current densities decreased, and passive ranges were broadened. Dynamic clotting time of the ion implanted substances was prolonged and hemolysis rate decreased. All the results pointed out that corrosion resistance and hemocompatibility of the alloys were improved by ion implantation, and effects of dual implantation was better than that of C single implantation. X-ray diffraction analysis of the alloys after dual implantation revealed that TiC, Mo(2)C, Mo(9)Ti(4), and Mo appeared on the surface of TiNi alloy, and CoC(x), Co(3)Ti, TiC, and TiO on the surface of Co-based alloys. These phases dispersing on the alloy surface formed amorphous film, prevented dissolving of alloy elements and improved the corrosion resistance and hemocompatibility of the alloys.

摘要

对生物医学用钛镍形状记忆合金和钴基合金进行了离子注入,并采用电化学方法、动态凝血时间和溶血率测试研究了它们的耐腐蚀性和血液相容性。结果表明,离子注入后材料的电化学稳定性和阳极极化行为得到显著改善。当分别向钛镍合金和钴基合金中注入Mo + C和Ti + C时,腐蚀电位提高了200 mV以上,自腐蚀电流密度降低,钝化区间变宽。离子注入物质的动态凝血时间延长,溶血率降低。所有结果表明,离子注入提高了合金的耐腐蚀性和血液相容性,双注入的效果优于碳单注入。双注入后合金的X射线衍射分析表明,钛镍合金表面出现了TiC、Mo(2)C、Mo(9)Ti(4)和Mo,钴基合金表面出现了CoC(x)、Co(3)Ti、TiC和TiO。这些分散在合金表面的相形成非晶态膜,阻止合金元素溶解,提高了合金的耐腐蚀性和血液相容性。

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