Salient aspects on micro-electrical discharge machining of nitinol for cardiovascular applications

S. Purushothaman, M. S. Srinivas, N. Venkaiah, M. R. Sankar
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Abstract

Micro-electrical discharge machining (micro-EDM) is a widely used technique for producing complex geometries with high precision in metals, including nitinol (NiTi) alloys. This review provides insights into the process parameters, electrode material, and surface integrity for the micro-EDM of NiTi. The pulse duration, pulse frequency, and discharge current are critical parameters that affect the machining performance of NiTi. Copper-tungsten and tungsten carbide are commonly used electrode materials for micro-EDM of NiTi. The surface integrity of the machined surface is an essential consideration for biomedical applications. There is a pressing need for the investigation of the microstructure and phase transformation of NiTi after micro-EDM to understand the influence of machining on the material properties. This review provides valuable information for researchers and engineers to optimize the machining performance and improve the material properties of NiTi for biomedical applications.
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用于心血管应用的镍钛诺微电子放电加工的主要方面
微放电加工(micro-EDM)是一种广泛应用的技术,可在金属(包括镍钛合金)上加工出高精度的复杂几何形状。本综述深入探讨了镍钛微放电加工的工艺参数、电极材料和表面完整性。脉冲持续时间、脉冲频率和放电电流是影响镍钛加工性能的关键参数。铜钨和碳化钨是镍钛微电火花加工常用的电极材料。加工表面的完整性是生物医学应用的重要考虑因素。目前迫切需要研究镍钛在微电火花加工后的微观结构和相变,以了解加工对材料性能的影响。本综述为研究人员和工程师提供了有价值的信息,以优化镍钛的加工性能并改善其在生物医学应用中的材料特性。
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