真空感应熔炼法回收压下钛合金加工切屑

E. Teke, M. Sütçü, Yıldıray Başkurt, Özgür Seydibeyoğlu
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引用次数: 0

摘要

在许多贵金属中,钛因其优越的机械、电化学和生物相容性而成为航空航天、汽车、船舶和医疗等各种应用的首选材料。本研究开发了一种利用真空感应系统对Ti6Al4V合金进行熔炼的新方法,用于回收医疗植入体加工工业中收集的钛屑。在熔化处理之前,回收的材料用乙醇和丙酮(纯度为96%)清洗,以去除金属废料中的冷却液。熔炼后,采用sem、EDS、光学显微镜、x射线衍射分析和洛氏硬度测试对熔炼后试样的显微组织、物相和硬度性能进行了研究。结果表明,尽管氧含量高,但这些熔融体材料可以用于生物材料以外的工程应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recovery of Pressed Titanium Alloy Machining Chip via Vacuum Induction Melting
Among many precious metals, titanium has been the first priorityin variousapplications such as aerospace, automotive, marine and medical sectors dueits superior mechanical, electrochemical, and biocompatible properties. In thisstudy, a new melting method withvacuum induction system for Ti6Al4V alloywas developed to recover titaniumscrapsthat were collected from medicalimplant machining industry. Prior to melting processing the recovered material wascleaned with ethyl alcohol and acetone (96% purity) to remove the coolantoil in the metal scraps.After the melting process, themicrostructure, phase and hardness properties of melted bulk specimen were investigatedbySEM, EDS, optical microscopy, XRDanalysisandRockwellhardnesstest.The results reveal that despite the high oxygen content, these molten bulk materials can be used in engineering applications other than biomaterials.
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