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Hydrogen's Absorption/Desorption Behavior in Gaseous-Phase Charged Duplex-Annealed Ti-6AI-4V Alloy

机译:气相电相带电双相退火的Ti-6ai-4V合金中的氢气吸收/解吸行为

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Ti-6Al-4V alloy has proven to be technically superior and cost-effective materials for a wide variety of aerospace, industrial, marine and commercial applications. The mechanical properties of Ti-6Al-4V are very sensitive to the microstructure obtained after the thermo-mechanical treatment. The duplex structures provide good tensile ductility, fatigue strength, resistance to microcrack growth and crack initiation, and are often used in demanding fatigue critical tasks. However, although Ti-6A-4V is considered to be reasonably resistance to chemical attack, severe problems can arise when it comes in contact with hydrogen-containing environments due to its susceptibility to hydrogen embrittlement. The objective of this paper is to investigate the absorption and desorption behavior of external hydrogen on a duplex-annealed Ti-6Al-4V alloy. While investigating the desorption profile, we seek to better understand the thermodynamics and the kinetic nature of the interaction between traps and hydrogen atoms, with specific emphasis on the investigation of the impact of these interactions on the microstructure of the studied aerospace applicative titanium alloy. In order to achieve these goals, thermal desorption spectroscopy (TDS) was applied and the data obtained from this analysis was supported by a variety of other experimental techniques, such as LECO hydrogen determinator, XRD and microstructure investigations by means of optic and electronic microscopy. Hydrogen was found to influence significantly the microstructure of the alloy. The process of hydrogen evolution was found to be a very complex process, being affected mainly by the phase transformations that may occur during the thermal analysis.
机译:TI-6AL-4V合金已被证明是技术上优越且具有成本效益的材料,适用于各种航空航天,工业,海洋和商业应用。 Ti-6Al-4V的机械性能对热机械处理后获得的微观结构非常敏感。双工结构提供良好的拉伸延展性,疲劳强度,抗微裂纹生长和裂纹引发,并且通常用于要求疲劳关键任务。然而,尽管Ti-6A-4V被认为是合理的化学侵蚀性,但由于其对氢脆化的易感性与含氢环境接触时,可能会出现严重的问题。本文的目的是研究外氢对双链退火的Ti-6Al-4V合金的吸收和解吸行为。在调查解吸概况的同时,我们寻求更好地了解陷阱和氢原子之间相互作用的热力学和动力学性质,并特别强调研究这些相互作用对所研究的航空航天钛合金的微观结构的影响。为了实现这些目标,施加热解吸光谱(TDS)并通过各种其他实验技术支持从该分析获得的数据,例如LeCo氢测定器,XRD和微观结构研究通过光学和电子显微镜。发现氢气影响合金的微观结构。发现氢进化的过程是一个非常复杂的过程,主要受到在热分析期间可能发生的相变的影响。

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