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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Hydrogen absorption and desorption in a duplex-annealed Ti-6Al-4V alloy during exposure to different hydrogen-containing environments
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Hydrogen absorption and desorption in a duplex-annealed Ti-6Al-4V alloy during exposure to different hydrogen-containing environments

机译:暴露在不同含氢环境中的双退火Ti-6Al-4V合金中的氢吸收和解吸

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摘要

Based on its excellent combination of a high strength/weight ratio and good corrosion behavior, Ti-6Al-4V alloy is ranked among the most important advanced materials for a variety of industrial applications. However, in many of these technological applications, this alloy is exposed to environments which can act as sources of hydrogen, and severe problems may arise based on its susceptibility to hydrogen embrittlement. Even small hydrogen concentrations might lead to failure. Consequently, a comprehensive knowledge of hydrogen's absorption/desorption behavior and interactions between hydrogen and different microstructural features is necessary to better understand the desorption and trapping mechanisms, the types of the trap sites, and the trapped hydrogen content, in order to determine the safe service conditions of this alloy in the industry. In this paper, different characteristics of hydrogen's absorption/desorption behavior and trapping in a duplex-annealed Ti-6Al-4V alloy are studied by means of thermal desorption spectroscopy (TDS). Spectra analysis is supported by data from a variety of other experimental techniques, such as LECO hydrogen determinator, XRD and microstructure investigations by means of optical and electron microscopy. Hydrogen evolution is found to be a very complex process, being affected by the way hydrogen was initially introduced to the alloy, the phase transformations that may occur during the thermal analysis and the presence of potential trapping sites.
机译:由于Ti-6Al-4V合金具有高强度/重量比和良好的腐蚀性能的出色组合,因此被列为各种工业应用中最重要的先进材料之一。然而,在许多这些技术应用中,该合金暴露于可作为氢源的环境中,并且由于其对氢脆的敏感性而可能产生严重的问题。即使很小的氢浓度也可能导致故障。因此,有必要全面了解氢的吸收/解吸行为以及氢与不同微观结构特征之间的相互作用,以便更好地了解解吸和捕集机理,捕集部位的类型和捕集的氢含量,从而确定安全服务该合金在工业中的条件。本文通过热解吸光谱法研究了双退火Ti-6Al-4V合金中氢的吸收/解吸行为和俘获的不同特征。光谱分析得到其他各种实验技术数据的支持,例如LECO氢测定仪,XRD和通过光学和电子显微镜进行的微观结构研究。发现氢的释放是一个非常复杂的过程,受氢最初引入合金的方式,在热分析过程中可能发生的相变以及潜在的俘获位点的影响。

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