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Effects of Fe Addition on the Snoek-Type Damping Behavior of Surface-Oxidation-Treated Ti-Mo Alloys

机译:铁的添加对表面氧化处理的Ti-Mo合金的Snoek型阻尼行为的影响

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摘要

Effects of Fe addition on the oxygen diffusion and the Snoek-type relaxation damping behavior of the Ti-15 wt pct Mo alloy were investigated in this study. After surface oxidation treatment, the Ti-15 wt pct Mo-1 wt pct Fe alloy exhibits a higher damping capacity compared to the Ti-15 wt pct Mo alloy. The dual-phase zone and the oxygen-enriched β-phase zone in the surface-oxidation-treated Ti-Mo alloys were determined by electron backscattered diffraction (EBSD) and hardness measurements. Based on the oxygen distributions in both alloys obtained through a diffusion model, the relative damping capacity of different zones contributing to the beam sample damping was estimated to be proportional to the thickness of the oxygen dissolved zones. On the other hand, the substitutional solute of Fe in the Ti-Mo-Fe alloy is considered to affect the oxygen distribution by lengthening the oxygen diffusion zone and increasing the oxygen concentration in this zone. As a result, the addition of Fe in Ti-Mo alloy improves the damping capacity of the surface-oxidation-treated alloys.
机译:研究了铁的添加对Ti-15 wt pct Mo合金的氧扩散和Snoek型弛豫阻尼行为的影响。经过表面氧化处理后,与Ti-15 wt pct Mo合金相比,Ti-15 wt pct Mo-1 wt pct Fe合金具有更高的阻尼能力。通过电子背散射衍射(EBSD)和硬度测量来确定表面氧化处理过的Ti-Mo合金中的双相区和富氧β相区。根据通过扩散模型获得的两种合金中的氧分布,估计对电子束样品阻尼有贡献的不同区域的相对阻尼能力与溶解氧区域的厚度成比例。另一方面,认为Ti-Mo-Fe合金中的Fe的置换溶质通过延长氧扩散区域并增加该区域中的氧浓度来影响氧分布。结果,在Ti-Mo合金中添加Fe改善了经表面氧化处理的合金的阻尼能力。

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