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Picosecond laser micromachining of nitinol and platinum–iridium alloy for coronary stent applications

机译:皮秒激光镍钛合金和铂铱合金微加工在冠状动脉支架中的应用

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摘要

The demand for micromachining of coronary stents by means of industrial lasers rises quickly for treating coronary artery diseases, which cause more than one million deaths each year. The most widely used types of laser for stent manufacturing are Nd:YAG laser systems with a wavelength of 1064 nm with pulse lengths of 10−3–10−2 seconds. Considerable post-processing is required to remove heat-affected zones (HAZ), and to improve surface finishes and geometry. Using a third harmonic laser radiation of picosecond laser (6×10−12 s pulse duration) in UV range, the capability of the picosecond laser micromachining of nitinol and platinum–iridium alloy for coronary stent applications are presented. In this study dross-free cut of nitinol and platinum–iridium alloy tubes are demonstrated and topography analysis of the cut surface is carried out. The HAZ characteristics have been investigated by means of microscopic examinations and measurement of micro-hardness distribution near the cut zones.
机译:对于治疗冠状动脉疾病的工业激光,对冠状动脉支架进行微加工的需求迅速上升,每年导致超过一百万的死亡。用于支架制造的最广泛使用的激光类型是Nd:YAG激光系统,其波长为1064 nm,脉冲长度为10 -3 –10 -2 秒。需要进行大量的后处理才能去除热影响区(HAZ),并改善表面光洁度和几何形状。利用紫外范围内皮秒激光(6×10 −12 s脉冲持续时间)的三次谐波激光辐射,提出了镍钛诺和铂铱合金皮秒激光微加工在冠状动脉支架应用中的能力。 。在这项研究中,镍钛合金和铂铱合金管的无渣切割得到了证明,并对切割表面进行了形貌分析。通过显微镜检查和测量切割区域附近的显微硬度分布,研究了热影响区的特性。

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