真空电子束焊接 TC4 钛合金接头室温压缩蠕变行为研究

IF 2.1 4区 物理与天体物理 Q3 PHYSICS, CONDENSED MATTER
Yiwen Yan , Pei Liu , Aiqin Wang , Jingpei Xie , Xiaoqian Bian , Zhenbo Wang
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引用次数: 0

摘要

室温压缩蠕变行为是深海环境中钛合金焊接结构件的一个关键问题。本研究系统研究了真空电子束焊接 TC4 钛合金接头不同区域的压缩蠕变行为,发现 TC4 钛合金接头熔合区(FZ)的蠕变应变率最小。这主要是因为 TC4 钛合金的蠕变变形主要是由α或α′相中的位错运动控制的,而 FZ 中的α′相尺寸较小,因此位错滑移受到限制。MD 模拟结果进一步表明,α-钛的室温压缩蠕变性质可视为塑性应变的动态滞后现象,并由位错运动所主导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation on the room temperature compressive creep behavior of TC4 titanium alloy joints with vacuum electron beam welding

The room temperature compressive creep behavior is a key issue for the titanium alloys welded structural components served in deep-sea environment. In the present work, the compressive creep behavior of different areas for TC4 titanium alloy joints with vacuum electron beam welding was systematically studied, and it is found that the fusion zone (FZ) of TC4 titanium alloy joints has the minimum creep strain rate. This is mainly because the creep deformation of TC4 titanium alloy is mainly controlled by the movement of dislocations in the α or α′ phases, the size of α′ phase in FZ is small, and thus the dislocation slip is limited. MD simulation results have further revealed that the room temperature compressive creep nature of α-Ti can be regarded as a dynamic hysteresis phenomenon in plastic strain and is dominated by the dislocation movement.

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来源期刊
Solid State Communications
Solid State Communications 物理-物理:凝聚态物理
CiteScore
3.40
自引率
4.80%
发文量
287
审稿时长
51 days
期刊介绍: Solid State Communications is an international medium for the publication of short communications and original research articles on significant developments in condensed matter science, giving scientists immediate access to important, recently completed work. The journal publishes original experimental and theoretical research on the physical and chemical properties of solids and other condensed systems and also on their preparation. The submission of manuscripts reporting research on the basic physics of materials science and devices, as well as of state-of-the-art microstructures and nanostructures, is encouraged. A coherent quantitative treatment emphasizing new physics is expected rather than a simple accumulation of experimental data. Consistent with these aims, the short communications should be kept concise and short, usually not longer than six printed pages. The number of figures and tables should also be kept to a minimum. Solid State Communications now also welcomes original research articles without length restrictions. The Fast-Track section of Solid State Communications is the venue for very rapid publication of short communications on significant developments in condensed matter science. The goal is to offer the broad condensed matter community quick and immediate access to publish recently completed papers in research areas that are rapidly evolving and in which there are developments with great potential impact.
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