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首页> 外文期刊>Materials express: an international journal on multidisciplinary materials research >High precision electrolytic polishing of Ni-Ti shape memory alloy for biomedical vascular stents
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High precision electrolytic polishing of Ni-Ti shape memory alloy for biomedical vascular stents

机译:生物医学血管支架Ni-Ti形状记忆合金高精度电解抛光

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摘要

There is a continuous demand for multi-disciplinary design approaches for the development of new implant materials. A potential biomaterial that is suitable for vascular stents and catheters is Ni-Ti alloy (Nitinol), which exhibits excellent biocompatibility, superelasticity, and shape memory effects. Corrosion resistance of Ni-Ti vascular stents in body fluids is significantly dependent on its surface finishing characteristics. In the study, as-drawn Ni-Ti wires were electropolished from a methanolic sulfuric acid electrolyte. The effect of various electropolishing (EP) parameters, i.e., current density, electropolishing time, and electrode gap, on the surface properties of Ni-Ti wires were examined. The surface morphology and topography of the Ni-Ti wires were characterized via scanning electron microscopy (SEM) and atomic force microscopy (AFM). The root mean square (R-a) surface roughness of electropolished Ni-Ti wires was also measured using AFM. The results indicated that the surface finishing of Ni-Ti alloy exhibited maximum sensitivity to electropolishing current density. An optimum combination of surface morphology and roughness was obtained at a parameter set with current density of approximately 0.5 A/cm(2), polishing time of 10 s, and electrode gap of 1.0 cm.
机译:对新型植入材料开发的多学科设计方法进行了不断的需求。适用于血管支架和导管的潜在的生物材料是Ni-Ti合金(镍钛合金),其具有优异的生物相容性,超弹性和形状记忆效应。 Ni-Ti血管支架在体液中的耐腐蚀性显着取决于其表面整理特性。在该研究中,从甲醇硫酸电解质中电氢化镍氢镍。检查了各种电解电镀(EP)参数,即电流密度,电解时间和电极间隙的影响,对Ni-Ti线的表面性质进行了影响。通过扫描电子显微镜(SEM)和原子力显微镜(AFM),表征了Ni-Ti线的表面形态和形貌。还使用AFM测量电抛光Ni-Ti线的根均方(R-A)表面粗糙度。结果表明,Ni-Ti合金的表面精加工表现出对电抛光电流密度的最大敏感性。在具有电流密度的约0.5a / cm(2),抛光时间为10 s的参数设定的参数集中获得了表面形态和粗糙度的最佳组合,电极间隙为1.0cm。

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