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Surface Analysis of Wire-Electrical-Discharge-Machining-Processed Shape-Memory Alloys

机译:线电气放电加工加工形状记忆合金的表面分析

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摘要

Shape-memory alloys such as nitinol are gaining popularity as advanced materials in the aerospace, medical, and automobile sectors. However, nitinol is a difficult-to-cut material because of its versatile specific properties such as the shape-memory effect, superelasticity, high specific strength, high wear and corrosion resistance, and severe strain hardening. Anunconventional machining process like wire-electrical-discharge-machining (WEDM) can be effectively and efficiently used for the machining of such alloys, although the WEDM-induced surface integrity of nitinol hassignificant impact on material performance. Therefore, this work investigated the surface integrity of WEDM-processed nitinol samples using digital microscopy imaging, scanning electron microscopy (SEM), and energy-dispersive X-ray (EDX) analysis. Three-dimensional analysis of the surfaces was carried out in two different patterns (along the periphery and the vertical plane of the machined surface) andrevealed that surface roughness was maximalat the point where the surface was largely exposed to the WEDM dielectric fluid. To attain the desired surface roughness, appropriate discharge energy is required that, in turn, requires the appropriate parameter settings of the WEDM process. Different SEM image analyses showed a reduction in microcracks and pores, and in globule-density size at optimized parameters. EDX analysis revealed the absence of wire material on the machined surface
机译:形状记忆合金,如镍钛诺在航空航天,医疗和汽车领域中的高级材料越来越受欢迎。然而,镍钛诺是因为它的多功能特定性质,例如形状记忆效应,超弹性,高比强度,高耐磨性和耐腐蚀性,和严重的应变硬化的难切割材料。电线电气放电加工(WEDM)等矛盾加工工艺可以有效地和有效地用于这种合金的加工,尽管Nitinol Hassignight对材料性能的影响的基因诱导的表面完整性。因此,这项工作研究了使用数字显微镜成像,扫描电子显微镜(SEM)和能量分散X射线(EDX)分析的WEDM-加工的镍钛烯醇样品的表面完整性。表面的三维分析以两种不同的图案(沿着机加工表面的垂直平面)进行,并且该表面粗糙度是最大粗糙度的光度,该点在大部分暴露于WEDM介电流体。为了达到所需的表面粗糙度,需要适当的放电能量,反过来,需要适当的WEDM过程的参数设置。不同的SEM图像分析显示微裂纹和毛孔减少,并且在优化参数下以球状密度尺寸。 EDX分析显示加工表面上没有电线材料

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