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Impact of microstructure on hydrogen solubility and diffusivity in UNS 07718

机译:微观结构对UNS 07718中氢溶解度和扩散率的影响

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Outstanding mechanical performance (high strength, ductility) and very good corrosion resistance made nickel base alloy UNS N07718 one of the preferred materials in oil industry.1 However, the reported hydrogen embrittlement susceptibility could be a serious limit to the material application.2'3 Systematic studies of the solubility of hydrogen in the material, UNS N07718, were the subject of the current work, specifically in relation to differences in the microstructure. Specimens were aged at 720, 750, 800, and 870 °C respectively to generate differences in y', y" and 5 phase morphology and quantity. After cathodic charging in ammonium sulfate solution for 24 hours, specimens were melted, and the amount of the released hydrogen was analyzed via mass spectrometer. Specimens rich in 5 phase precipitates revealed higher hydrogen contents in comparison to the specimens with high amount of y' and y" precipitations and low amount of 5 phase precipitations. Similar observations were made for the hydrogen diffusion coefficients, determined by means of Devanathan and Stachurski technique. The hydrogen diffusion coefficients of 5 phase rich variants were about twice as high as of the variations with y' and y" phases. The obtained experimental results provide an important contribution that clarifies the impact of microstructure on hydrogen embrittlement susceptibility of the material UNS N07718.
机译:出色的机械性能(高强度,延展性)和非常好的耐蚀性使镍基合金UNS N07718成为石油工业中的首选材料。1但是,据报道的氢脆敏感性可能严重限制了材料的应用。2'3对氢在材料中的溶解度的系统研究(UNS N07718)是当前工作的主题,特别是在微观结构方面。样品分别在720、750、800和870°C下进行时效处理,以产生y',y“和5相形态和数量差异。在硫酸铵溶液中阴极充电24小时后,样品熔化,并且与y'和y“沉淀量高且5相沉淀量少的样品相比,富含5相沉淀物的样品显示出更高的氢含量。对于氢的扩散系数也进行了类似的观察,该氢的扩散系数是通过Devanathan和Stachurski技术确定的。 5种富相变体的氢扩散系数约为y'和y“相的氢扩散系数的两倍。获得的实验结果为阐明微观结构对材料UNS N07718的氢脆敏感性的影响做出了重要贡献。

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