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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Investigation of hydrogen-deformation interactions in beta-21S titanium alloy using thermal desorption spectroscopy
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Investigation of hydrogen-deformation interactions in beta-21S titanium alloy using thermal desorption spectroscopy

机译:热解吸光谱法研究β-21S钛合金中的氢变形相互作用

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The focus of this paper is the investigation of the combined influence of hydrogen and pre-plastic deformation on hydrogen's absorption/desorption behavior, the microstracture and microhardness of a single-phased beta-21S alloy. In this study, thermal desorption analyses (TDS) evaluation of various desorption and trapping parameters provide further insight on the relationships between hydrogen absorption/desorption processes and deformation, and their mutual influence on the microstructure and the microhardness of beta-21S alloy. TDS spectra were supported by other experimental techniques, such as X-ray diffraction, scanning and transmission electron microscopy, hydrogen quantity analyses and microhardness tests. Pre-plastic deformation, performed before the electrochemical hydrogenation of the alloy, increased significantly the hydrogen absorption capacity. Its influence was also evident on the notably expanded lattice parameter of beta-21S alloy after hydrogenation. However, no hydride precipitation was observed. An interesting softening effect of the pre-deformed hydrogenated alloy was revealed by microhardness tests. TDS demonstrated the significant effect of pre-plastic deformation on the hydrogen evolution process. Hydrogen desorption temperature and the activation energy for hydrogen release increased, additional trap states were observed and the amount of desorbed hydrogen decreased.
机译:本文的重点是研究氢和预塑性变形对氢的吸收/解吸行为,单相β-21S合金的显微组织和显微硬度的综合影响。在这项研究中,对各种脱附和捕集参数的热脱附分析(TDS)评估提供了对氢吸收/脱附过程与形变之间的关系以及它们对β-21S合金的显微组织和显微硬度的相互影响的进一步了解。 TDS光谱得到其他实验技术的支持,例如X射线衍射,扫描和透射电子显微镜,氢量分析和显微硬度测试。在合金的电化学加氢之前进行的预塑性变形显着提高了氢吸收能力。加氢后,其对β-21S合金明显扩展的晶格参数的影响也很明显。但是,没有观察到氢化物沉淀。通过显微硬度测试揭示了预变形的氢化合金的有趣的软化效果。 TDS证明了塑性前变形对析氢过程的显着影响。氢解吸温度和释放氢的活化能增加,观察到另外的陷阱状态,并且解吸的氢量减少。

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