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High Fugacity Hydrogen Effects in Beta-21S Titanium Alloy

机译:Beta-21S钛合金中的高逸度氢效应

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Beta-21S titanium alloy is ranked among the most important advanced materials for a variety of technological applications, due to its combination of a high strength/weight ratio, good corrosion behavior and oxidation resistance. However, in many of these technological applications, this alloy is exposed to environments which can act as sources of hydrogen, and consequently, severe problems may arise. The objective of this paper is to investigate the influence of high fugacity hydrogen on Beta-21S alloy in as-received (mill-annealed and hot-rolled) condition. Hydrogen effects on the microstructure are studied using X-ray diffraction and electron microscopy, while the absorption and desorption characteristics are determined respectively by means of a hydrogen determinator and thermal desorption spectroscopy. Preliminary results at room temperature revealed hydrogen-induced straining and expansion of the lattice parameters. However, neither second phases formation (hydrides), nor hydrogen-induced cracking, were observed after hydrogenation. The main characteristics of hydrogen absorption/desorption behavior, as well as hydrogen-induced microstructural changes in both microstructures are discussed in detail.
机译:Beta-21S钛合金具有高强度/重量比,良好的腐蚀性能和抗氧化性,因此被列为各种技术应用中最重要的先进材料。然而,在许多这些技术应用中,该合金暴露于可以充当氢源的环境中,因此,可能出现严重的问题。本文的目的是研究高逸度氢对在接收(轧制退火和热轧)条件下Beta-21S合金的影响。使用X射线衍射和电子显微镜研究氢对微观结构的影响,同时分别通过氢测定仪和热解吸光谱法测定吸收和解吸特性。在室温下的初步结果显示氢诱导的应变和晶格参数的扩展。但是,氢化后既未观察到第二相的形成(氢化物),也未观察到氢引起的裂化。详细讨论了氢吸收/解吸行为的主要特征,以及氢诱导的两种微观结构的变化。

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