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The investigation of anodic polarization characteristics of NiTi thin films for fabricating vascular stents using electrolytic photo etching technique

机译:用电解光蚀刻技术对血管支架制备血管支架阳极偏振特性的研究

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This research aimed to develop a process to micro machine vascular stents from NiTi thin films. The stent has been recognized as useful for minimally invasive medical applications. A non-traditional machining process called electrolytic photo etching was chosen in this research. This process involves photo resist processing and electrolytic etching, which is done by controlling the anodic polarization characteristics of NiTi thin films so as to prevent creating a passivation layer on them. In order to investigate the electrochemical characteristics of NiTi thin films quantitatively in the electrolyte of 5% sulphuric acid in methanol, the anodic polarization measurements at a series of constant anode potentials were conducted. The electrolyte temperature and electrode distance were also to be varied during the measurement. In order to optimize process parameters for electrolytic etching stents, such as electrolyte temperature, electrode distance and current density, the analysis of the correlation of anodic polarization behavior of NiTi thin film to its active, passive and transpassive characteristics in the electrolyte was performed.
机译:该研究旨在为来自NITI薄膜的微机器血管支架进行过程。该支架已被认可用于微创医疗应用。在该研究中选择了一种名为电解光蚀刻的非传统加工过程。该过程涉及光致抗蚀剂处理和电解蚀刻,这是通过控制Niti薄膜的阳极偏振特性来完成的,以防止在它们上产生钝化层。为了在甲醇中定量地在5%硫酸的电解质中定量地研究Niti薄膜的电化学特性,进行了一系列恒定阳极电位的阳极偏振测量。在测量期间,电解质温度和电极距离也在变化。为了优化电解蚀刻支架的工艺参数,例如电解质温度,电极距离和电流密度,进行Niti薄膜阳极偏振行为与电解质中的活性,被动和过透过特性的阳极偏振行为的相关性的分析。

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