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首页> 外文期刊>International journal of hydrogen energy >The influence of the processing route on the fragmentation of (Nb,Ti)C stringers and its role on mechanical properties and hydrogen embrittlement of nickel based alloy 718
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The influence of the processing route on the fragmentation of (Nb,Ti)C stringers and its role on mechanical properties and hydrogen embrittlement of nickel based alloy 718

机译:加工途径对(NB,Ti)C串破碎物及其在镍基合金机械性能和氢脆作用的影响718

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摘要

The nickel-base superalloy 718 is a precipitation hardened alloy widely used in the nuclear fuel assembly of pressurized water reactors (PWR). However, the alloy can experience failure due to hydrogen embrittlement (HE). The processing route can influence the microstructure of the material and, therefore, the HE degree. In particular, the size and distribution of the (Nb,Ti)C particles can be affected by the processing. In this regard, the objective of this work was to analyze the influence of cold and hot deformation processing routes on the development of the microstructure, and the consequences on mechanical properties and hydrogen embrittlement. Tensile samples were hydrogenated through gaseous charging and compared to non-hydrogenated samples. Characterization was performed via scanning and transmission electron microscopies, as well as electron backscattered diffraction. The processing was effective to promote significant variations in average grain size and length fraction of special Sigma 3(n) boundaries, as well as reduction of average (Nb,Ti)C particle size, being these changes more intense for the cold-rolled route. For the mechanical properties, on one side, the cold-rolled route presented the highest increase in ductility for non-hydrogenated samples, while, on the other side, had the highest degree of embrittlement under hydrogen. This dual behavior was attributed to the interaction of hydrogen with the (Nb,Ti)C particles and stringers and its ensuing influence on the fracture processes. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:镍基超合金718是广泛用于加压水反应器(PWR)的核燃料组件中的沉淀硬化合金。然而,由于氢脆(HE),合金可以体验失败。加工途径可以影响材料的微观结构,因此是他的程度。特别地,(Nb,Ti)C粒子的尺寸和分布可能受到处理的影响。在这方面,这项工作的目的是分析冷热变形加工途径对微观结构发展的影响,以及对机械性能和氢脆的后果。通过气态充电氢化拉伸样品并与非氢化样品相比氢化。通过扫描和透射电子显微镜以及电子背散射衍射进行表征。该加工是有效促进特殊Sigma 3(N)界限的平均晶粒尺寸和长度分数的显着变化,以及降低平均(Nb,Ti)C粒径,是冷轧途径更加强烈的变化。对于机械性能,一侧,冷轧途径呈现出非氢化样品的延性的最高增加,而另一侧,在氢气下具有最高程度的脆化。这种双重行为归因于氢与(Nb,Ti)C颗粒和桁条的相互作用及其随后对裂缝过程的影响。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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