用电子束熔化法探讨了钛的脱氧机理

IF 4.2 3区 工程技术 Q2 ELECTROCHEMISTRY Electrochemistry Communications Pub Date : 2025-01-01 Epub Date: 2024-12-14 DOI:10.1016/j.elecom.2024.107856
Hyun chul Kim , Namhun Kwon , Jae-Hong Shin , Dong hyun Kim , Soong Ju Oh , Kyoung-Tae Park
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引用次数: 0

摘要

在这项研究中,我们研究了在电子束熔化(EBM)条件下钛中氧的挥发,并将电子束输出与氧含量变化联系起来。通过应用电子束对钛进行脱氧的潜力仍然是一个正在进行辩论的主题。为了验证这一点,通过氮氧分析定量了电子束处理对不同钛原料氧含量的影响。此外,利用密度泛函理论(DFT)计算了氧在钛中的扩散机理,并对电子束产生的带正电的表面层影响氧在钛中的扩散机理进行了评价。循氧治疗后,氧浓度平均降低50%。残余气体分析证实了氧气在10分钟内的演化。热力学计算表明,在超过4,000 K的温度下,在大约5 × 10−7 Torr的真空中脱氧是可行的,从而证实了脱氧的潜力。此外,DFT计算表明,氧扩散系数随着表面正电荷的增加而成比例地增加,从而促进了电子束环境中氧的去除。
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Titanium deoxidation mechanism probed using an electron beam melting method
In this study, we examine the volatilization of oxygen in titanium under electron beam melting (EBM) conditions, correlating the beam output with oxygen content changes. The potential for titanium deoxidation through the application of electron beams remains a subject of ongoing debate. To verify this experimentally, the effects of electron beam processing on the oxygen contents of different titanium raw materials are quantified by nitrogen/oxygen analysis. Moreover, the mechanism of oxygen diffusion in titanium, which is affected by the positively charged surface layer generated by the electron beam, is evaluated by determining the corresponding activation energy using density functional theory (DFT) calculations. An average reduction of oxygen concentration by 50 % was observed following EBM. Residual gas analysis confirmed the evolution of oxygen gas over a duration of 10 min. Thermodynamic calculations indicate that deoxidation is feasible at temperatures exceeding 4,000 K in a vacuum of approximately 5 × 10−7 Torr, thereby substantiating the potential for deoxidation. Furthermore, DFT calculations demonstrated that the oxygen diffusion coefficient increases proportionally with an increase in positive surface charge, thereby facilitating the removal of oxygen in an electron beam environment.
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来源期刊
Electrochemistry Communications
Electrochemistry Communications 工程技术-电化学
CiteScore
8.50
自引率
3.70%
发文量
160
审稿时长
1.2 months
期刊介绍: Electrochemistry Communications is an open access journal providing fast dissemination of short communications, full communications and mini reviews covering the whole field of electrochemistry which merit urgent publication. Short communications are limited to a maximum of 20,000 characters (including spaces) while full communications and mini reviews are limited to 25,000 characters (including spaces). Supplementary information is permitted for full communications and mini reviews but not for short communications. We aim to be the fastest journal in electrochemistry for these types of papers.
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