How Do Advanced Micromachining Technologies Affect the Performance of Nitinol Medical Devices?

Lucas Bittigkoffer, Martin Baumann, Nils-Agne Feth
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Abstract

Advanced micromachining processes like laser micromachining, electric discharge machining (EDM) and milling are key processes when fabricating Nitinol medical devices. Unfortunately, each machining process alters the thermomechanical properties of Nitinol - especially around the processing zone. To judge how much this affects the functionality of Nitinol devices, precise knowledge about the micromachining processes applied is crucial. Performance of a medical device from a manufacturer point of view is governed by its geometry. Attainable geometries are linked to the respective machining technology. Lastly the process itself might be limited concerning surface roughness, contour accuracy, and aspect ratio. Ecological aspects include the achievable material removal rate (MRR, volume per time) and necessary post processes. In this work, the authors report on recent developments in the field of micromachining Nitinol, especially in which way the respective technology affects the properties and the design of medical components. A comparative analysis of micromachining technologies is presented.
先进的微加工技术如何影响钛诺医疗器械的性能?
先进的微加工工艺,如激光微加工,电火花加工(EDM)和铣削是制造镍钛诺医疗器械的关键工艺。不幸的是,每次加工过程都会改变镍钛诺的热机械性能,特别是在加工区域周围。要判断这对镍钛诺设备的功能有多大影响,对所应用的微加工过程的精确了解至关重要。从制造商的角度来看,医疗设备的性能是由其几何形状决定的。可获得的几何形状与各自的加工技术相关联。最后,工艺本身可能受到表面粗糙度、轮廓精度和纵横比的限制。生态方面包括可实现的材料去除率(MRR,每次体积)和必要的后处理。在这项工作中,作者报告了镍钛诺微加工领域的最新发展,特别是各自的技术如何影响医疗部件的性能和设计。对几种微加工技术进行了对比分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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