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HYDROGEN DIFFUSIVITY AND SOLUBILITY IN CRYSTALLINE AND AMORPHOUS ALLOYS

机译:结晶态和非晶态合金中氢的扩散率和溶解度

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摘要

The hydrogen permeation behaviour of iron-and nickel-based amorphous alloys was characterized using electrochemical methodology and compared with the properties of crystalline metals and alloys. The materials studied were amorphous Fe40Ni38Mo4B18, Fe74Ni4Mo3B17, Fe78B13Si9 and Ni81P19, as well as a crystalline low-carbon steel, pure nickel and pure palladium. The double potentiostatic electrochemical hydrogen permeation tests were performed at 40 degrees C using a 0.1 N NaOH solution as electrolyte. It was found that the hydrogen diffusivity in the iron-based amorphous alloys is a few orders of magnitude lower than in carbon steel and iron, while a much smaller difference exists between Ni81P19 and pure nickel. Furthermore, the amorphous alloys showed a strikingly greater capacity to dissolve hydrogen in solid solution compared with their crystalline counterparts. In some cases, their apparent hydrogen solubility was even greater than that for the liquid metal of the main element present in their chemical composition. [References: 10]
机译:铁和镍基非晶合金的氢渗透行为使用电化学方法进行了表征,并与晶体金属和合金的性能进行了比较。研究的材料是非晶态的Fe40Ni38Mo4B18,Fe74Ni4Mo3B17,Fe78B13Si9和Ni81P19,以及结晶的低碳钢,纯镍和纯钯。使用0.1N NaOH溶液作为电解质在40℃下进行双重恒电位电化学氢渗透测试。已经发现,铁基非晶态合金中的氢扩散率比碳钢和铁中的氢扩散率低几个数量级,而Ni81P19与纯镍之间的差异要小得多。此外,非晶态合金与结晶态合金相比,具有显着更高的固溶氢溶解能力。在某些情况下,它们的表观氢溶解度甚至大于其化学组成中存在的主要元素的液态金属的溶解度。 [参考:10]

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